Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV

Abstract A partial wave analysis on the process e + e − → ωπ + π − is performed using 647 pb −1 of data sample collected by using the BESIII detector operating at the BEPCII storage ring at center-of-mass (c.m.) energies from 2.000 GeV to 3.080 GeV. The Born cross section of the e + e − → ωπ + π − p...

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Main Authors: The BESIII collaboration, M. Ablikim, M. N. Achasov, P. Adlarson, S. Ahmed, M. Albrecht, R. Aliberti, A. Amoroso, M. R. An, Q. An, X. H. Bai, Y. Bai, O. Bakina, R. Baldini Ferroli, I. Balossino, Y. Ban, V. Batozskaya, D. Becker, K. Begzsuren, N. Berger, M. Bertani, D. Bettoni, F. Bianchi, J. Bloms, A. Bortone, I. Boyko, R. A. Briere, A. Brueggemann, H. Cai, X. Cai, A. Calcaterra, G. F. Cao, N. Cao, S. A. Cetin, J. F. Chang, W. L. Chang, G. Chelkov, C. Chen, G. Chen, H. S. Chen, M. L. Chen, S. J. Chen, T. Chen, X. R. Chen, X. T. Chen, Y. B. Chen, Z. J. Chen, W. S. Cheng, G. Cibinetto, F. Cossio, J. J. Cui, H. L. Dai, J. P. Dai, X. C. Dai, A. Dbeyssi, R. E. de Boer, D. Dedovich, Z. Y. Deng, A. Denig, I. Denysenko, M. Destefanis, F. De Mori, Y. Ding, J. Dong, L. Y. Dong, M. Y. Dong, X. Dong, S. X. Du, P. Egorov, Y. L. Fan, J. Fang, S. S. Fang, Y. Fang, R. Farinelli, L. Fava, F. Feldbauer, G. Felici, C. Q. Feng, J. H. Feng, K Fischer, M. Fritsch, C. D. Fu, Y. N. Gao, Yang Gao, I. Garzia, P. T. Ge, C. Geng, E. M. Gersabeck, A Gilman, K. Goetzen, L. Gong, W. X. Gong, W. Gradl, M. Greco, M. H. Gu, C. Y Guan, A. Q. Guo, L. B. Guo, R. P. Guo, Y. P. Guo, A. Guskov, T. T. Han, W. Y. Han, X. Q. Hao, F. A. Harris, K. K. He, K. L. He, F. H. Heinsius, C. H. Heinz, Y. K. Heng, C. Herold, M. Himmelreich, T. Holtmann, G. Y. Hou, Y. R. Hou, Z. L. Hou, H. M. Hu, J. F. Hu, T. Hu, Y. Hu, G. S. Huang, K. X. Huang, L. Q. Huang, X. T. Huang, Y. P. Huang, Z. Huang, T. Hussain, N Hüsken, W. Imoehl, M. Irshad, S. Jaeger, S. Janchiv, Q. Ji, Q. P. Ji, X. B. Ji, X. L. Ji, Y. Y. Ji, H. B. Jiang, S. S. Jiang, X. S. Jiang, J. B. Jiao, Z. Jiao, S. Jin, Y. Jin, M. Q. Jing, T. Johansson, N. Kalantar-Nayestanaki, X. S. Kang, R. Kappert, M. Kavatsyuk, B. C. Ke, I. K. Keshk, A. Khoukaz, P. Kiese, R. Kiuchi, R. Kliemt, L. Koch, O. B. Kolcu, B. Kopf, M. Kuemmel, M. Kuessner, A. Kupsc, M. G. Kurth, W. Kühn, J. J. Lane, J. S. Lange, P. Larin, A. Lavania, L. Lavezzi, Z. H. Lei, H. Leithoff, M. Lellmann, T. Lenz, C. Li, C. H. Li, Cheng Li, D. M. Li, F. Li, G. Li, H. Li, H. B. Li, H. J. Li, H. N. Li, J. L. Li, J. Q. Li, J. S. Li, Ke Li, L. J Li, L. K. Li, Lei Li, M. H. Li, P. R. Li, S. X. Li, S. Y. Li, T. Li, W. D. Li, W. G. Li, X. H. Li, X. L. Li, Xiaoyu Li, Z. Y. Li, H. Liang, Y. F. Liang, Y. T. Liang, G. R. Liao, L. Z. Liao, J. Libby, A. Limphirat, C. X. Lin, D. X. Lin, T. Lin, B. J. Liu, C. X. Liu, D. Liu, F. H. Liu, Fang Liu, Feng Liu, G. M. Liu, H. M. Liu, Huanhuan Liu, Huihui Liu, J. B. Liu, J. L. Liu, J. Y. Liu, K. Liu, K. Y. Liu, Ke Liu, L. Liu, M. H. Liu, P. L. Liu, Q. Liu, S. B. Liu, T. Liu, W. M. Liu, X. Liu, Y. Liu, Y. B. Liu, Z. A. Liu, Z. Q. Liu, X. C. Lou, F. X. Lu, H. J. Lu, J. D. Lu, J. G. Lu, X. L. Lu, Y. Lu, Y. P. Lu, Z. H. Lu, C. L. Luo, M. X. Luo, T. Luo, X. L. Luo, X. R. Lyu, Y. F. Lyu, F. C. Ma, H. L. Ma, L. L. Ma, M. M. Ma, Q. M. Ma, R. Q. Ma, R. T. Ma, X. X. Ma, X. Y. Ma, Y. Ma, F. E. Maas, M. Maggiora, S. Maldaner, S. Malde, Q. A. Malik, A. Mangoni, Y. J. Mao, Z. P. Mao, S. Marcello, Z. X. Meng, J. G. Messchendorp, G. Mezzadri, H. Miao, T. J. Min, R. E. Mitchell, X. H. Mo, N. Yu. Muchnoi, H. Muramatsu, S. Nakhoul, Y. Nefedov, F. Nerling, I. B. Nikolaev, Z. Ning, S. Nisar, S. L. Olsen, Q. Ouyang, S. Pacetti, X. Pan, Y. Pan, A. Pathak, M. Pelizaeus, H. P. Peng, K. Peters, J. Pettersson, J. L. Ping, R. G. Ping, S. Plura, S. Pogodin, R. Poling, V. Prasad, H. Qi, H. R. Qi, M. Qi, T. Y. Qi, S. Qian, W. B. Qian, Z. Qian, C. F. Qiao, J. J. Qin, L. Q. Qin, X. P. Qin, X. S. Qin, Z. H. Qin, J. F. Qiu, S. Q. Qu, K. H. Rashid, K. Ravindran, C. F. Redmer, K. J. Ren, A. Rivetti, V. Rodin, M. Rolo, G. Rong, Ch. Rosner, M. Rump, H. S. Sang, A. Sarantsev, Y. Schelhaas, C. Schnier, K. Schoenning, M. Scodeggio, K. Y. Shan, W. Shan, X. Y. Shan, J. F. Shangguan, L. G. Shao, M. Shao, C. P. Shen, H. F. Shen, X. Y. Shen, B.-A. Shi, H. C. Shi, R. S. Shi, X. Shi, X. D Shi, J. J. Song, W. M. Song, Y. X. Song, S. Sosio, S. Spataro, F. Stieler, K. X. Su, P. P. Su, Y.-J. Su, G. X. Sun, H. K. Sun, J. F. Sun, L. Sun, S. S. Sun, T. Sun, W. Y. Sun, X Sun, Y. J. Sun, Y. Z. Sun, Z. T. Sun, Y. H. Tan, Y. X. Tan, C. J. Tang, G. Y. Tang, J. Tang, L. Y Tao, Q. T. Tao, J. X. Teng, V. Thoren, W. H. Tian, Y. T. Tian, I. Uman, B. Wang, D. Y. Wang, F. Wang, H. J. Wang, H. P. Wang, K. Wang, L. L. Wang, M. Wang, M. Z. Wang, Meng Wang, S. Wang, T. J. Wang, W. Wang, W. H. Wang, W. P. Wang, X. Wang, X. F. Wang, X. L. Wang, Y. D. Wang, Y. F. Wang, Y. Q. Wang, Y. Y. Wang, Ying Wang, Z. Wang, Z. Y. Wang, Ziyi Wang, Zongyuan Wang, D. H. Wei, F. Weidner, S. P. Wen, D. J. White, U. Wiedner, G. Wilkinson, M. Wolke, L. Wollenberg, J. F. Wu, L. H. Wu, L. J. Wu, X. Wu, X. H. Wu, Y. Wu, Z. Wu, L. Xia, T. Xiang, H. Xiao, S. Y. Xiao, Y. L. Xiao, Z. J. Xiao, X. H. Xie, Y. G. Xie, Y. H. Xie, Z. P. Xie, T. Y. Xing, C. F. Xu, C. J. Xu, G. F. Xu, Q. J. Xu, S. Y. Xu, W. Xu, X. P. Xu, Y. C. Xu, F. Yan, L. Yan, W. B. Yan, W. C. Yan, H. J. Yang, H. X. Yang, L. Yang, S. L. Yang, Y. X. Yang, Yifan Yang, Zhi Yang, M. Ye, M. H. Ye, J. H. Yin, Z. Y. You, B. X. Yu, C. X. Yu, G. Yu, J. S. Yu, T. Yu, C. Z. Yuan, L. Yuan, S. C. Yuan, X. Q. Yuan, Y. Yuan, Z. Y. Yuan, C. X. Yue, A. A. Zafar, X. Zeng, Y. Zeng, Y. H. Zhan, A. Q. Zhang, B. L. Zhang, B. X. Zhang, G. Y. Zhang, H. Zhang, H. H. Zhang, H. Y. Zhang, J. L. Zhang, J. Q. Zhang, J. W. Zhang, J. Y. Zhang, J. Z. Zhang, Jianyu Zhang, Jiawei Zhang, L. M. Zhang, L. Q. Zhang, Lei Zhang, P. Zhang, Shulei Zhang, X. D. Zhang, X. M. Zhang, X. Y. Zhang, Y. Zhang, Y. T. Zhang, Y. H. Zhang, Yan Zhang, Yao Zhang, Z. H. Zhang, Z. Y. Zhang, G. Zhao, J. Zhao, J. Y. Zhao, J. Z. Zhao, Lei Zhao, Ling Zhao, M. G. Zhao, Q. Zhao, S. J. Zhao, Y. B. Zhao, Y. X. Zhao, Z. G. Zhao, A. Zhemchugov, B. Zheng, J. P. Zheng, Y. H. Zheng, B. Zhong, C. Zhong, X. Zhong, L. P. Zhou, Q. Zhou, X. Zhou, X. K. Zhou, X. R. Zhou, X. Y. Zhou, Y. Z. Zhou, A. N. Zhu, J. Zhu, K. Zhu, K. J. Zhu, S. H. Zhu, T. J. Zhu, W. J. Zhu, Y. C. Zhu, Z. A. Zhu, B. S. Zou, J. H. Zou
Format: Article
Language:English
Published: SpringerOpen 2023-01-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP01(2023)111
_version_ 1797836670467309568
author The BESIII collaboration
M. Ablikim
M. N. Achasov
P. Adlarson
S. Ahmed
M. Albrecht
R. Aliberti
A. Amoroso
M. R. An
Q. An
X. H. Bai
Y. Bai
O. Bakina
R. Baldini Ferroli
I. Balossino
Y. Ban
V. Batozskaya
D. Becker
K. Begzsuren
N. Berger
M. Bertani
D. Bettoni
F. Bianchi
J. Bloms
A. Bortone
I. Boyko
R. A. Briere
A. Brueggemann
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
J. F. Chang
W. L. Chang
G. Chelkov
C. Chen
G. Chen
H. S. Chen
M. L. Chen
S. J. Chen
T. Chen
X. R. Chen
X. T. Chen
Y. B. Chen
Z. J. Chen
W. S. Cheng
G. Cibinetto
F. Cossio
J. J. Cui
H. L. Dai
J. P. Dai
X. C. Dai
A. Dbeyssi
R. E. de Boer
D. Dedovich
Z. Y. Deng
A. Denig
I. Denysenko
M. Destefanis
F. De Mori
Y. Ding
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
S. X. Du
P. Egorov
Y. L. Fan
J. Fang
S. S. Fang
Y. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
K Fischer
M. Fritsch
C. D. Fu
Y. N. Gao
Yang Gao
I. Garzia
P. T. Ge
C. Geng
E. M. Gersabeck
A Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
M. Greco
M. H. Gu
C. Y Guan
A. Q. Guo
A. Q. Guo
L. B. Guo
R. P. Guo
Y. P. Guo
A. Guskov
T. T. Han
W. Y. Han
X. Q. Hao
F. A. Harris
K. K. He
K. L. He
F. H. Heinsius
C. H. Heinz
Y. K. Heng
C. Herold
M. Himmelreich
T. Holtmann
G. Y. Hou
Y. R. Hou
Z. L. Hou
H. M. Hu
J. F. Hu
T. Hu
Y. Hu
G. S. Huang
K. X. Huang
L. Q. Huang
X. T. Huang
Y. P. Huang
Z. Huang
T. Hussain
N Hüsken
W. Imoehl
M. Irshad
S. Jaeger
S. Janchiv
Q. Ji
Q. P. Ji
X. B. Ji
X. L. Ji
Y. Y. Ji
H. B. Jiang
S. S. Jiang
X. S. Jiang
J. B. Jiao
Z. Jiao
S. Jin
Y. Jin
M. Q. Jing
T. Johansson
N. Kalantar-Nayestanaki
X. S. Kang
R. Kappert
M. Kavatsyuk
B. C. Ke
I. K. Keshk
A. Khoukaz
P. Kiese
R. Kiuchi
R. Kliemt
L. Koch
O. B. Kolcu
B. Kopf
M. Kuemmel
M. Kuessner
A. Kupsc
M. G. Kurth
W. Kühn
J. J. Lane
J. S. Lange
P. Larin
A. Lavania
L. Lavezzi
Z. H. Lei
H. Leithoff
M. Lellmann
T. Lenz
C. Li
C. Li
C. H. Li
Cheng Li
D. M. Li
F. Li
G. Li
H. Li
H. Li
H. B. Li
H. J. Li
H. N. Li
J. L. Li
J. Q. Li
J. S. Li
Ke Li
L. J Li
L. K. Li
Lei Li
M. H. Li
P. R. Li
S. X. Li
S. Y. Li
T. Li
W. D. Li
W. G. Li
X. H. Li
X. L. Li
Xiaoyu Li
Z. Y. Li
H. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
L. Z. Liao
J. Libby
A. Limphirat
C. X. Lin
D. X. Lin
T. Lin
B. J. Liu
C. X. Liu
D. Liu
F. H. Liu
Fang Liu
Feng Liu
G. M. Liu
H. M. Liu
Huanhuan Liu
Huihui Liu
J. B. Liu
J. L. Liu
J. Y. Liu
K. Liu
K. Y. Liu
Ke Liu
L. Liu
M. H. Liu
P. L. Liu
Q. Liu
S. B. Liu
T. Liu
T. Liu
W. M. Liu
X. Liu
Y. Liu
Y. B. Liu
Z. A. Liu
Z. Q. Liu
X. C. Lou
F. X. Lu
H. J. Lu
J. D. Lu
J. G. Lu
X. L. Lu
Y. Lu
Y. P. Lu
Z. H. Lu
C. L. Luo
M. X. Luo
T. Luo
X. L. Luo
X. R. Lyu
Y. F. Lyu
F. C. Ma
H. L. Ma
L. L. Ma
M. M. Ma
Q. M. Ma
R. Q. Ma
R. T. Ma
X. X. Ma
X. Y. Ma
Y. Ma
F. E. Maas
M. Maggiora
S. Maldaner
S. Malde
Q. A. Malik
A. Mangoni
Y. J. Mao
Z. P. Mao
S. Marcello
Z. X. Meng
J. G. Messchendorp
G. Mezzadri
H. Miao
T. J. Min
R. E. Mitchell
X. H. Mo
N. Yu. Muchnoi
H. Muramatsu
S. Nakhoul
Y. Nefedov
F. Nerling
I. B. Nikolaev
Z. Ning
S. Nisar
S. L. Olsen
Q. Ouyang
S. Pacetti
X. Pan
Y. Pan
A. Pathak
A. Pathak
M. Pelizaeus
H. P. Peng
K. Peters
J. Pettersson
J. L. Ping
R. G. Ping
S. Plura
S. Pogodin
R. Poling
V. Prasad
H. Qi
H. R. Qi
M. Qi
T. Y. Qi
S. Qian
W. B. Qian
Z. Qian
C. F. Qiao
J. J. Qin
L. Q. Qin
X. P. Qin
X. S. Qin
Z. H. Qin
J. F. Qiu
S. Q. Qu
S. Q. Qu
K. H. Rashid
K. Ravindran
C. F. Redmer
K. J. Ren
A. Rivetti
V. Rodin
M. Rolo
G. Rong
Ch. Rosner
M. Rump
H. S. Sang
A. Sarantsev
Y. Schelhaas
C. Schnier
K. Schoenning
M. Scodeggio
K. Y. Shan
W. Shan
X. Y. Shan
J. F. Shangguan
L. G. Shao
M. Shao
C. P. Shen
H. F. Shen
X. Y. Shen
B.-A. Shi
H. C. Shi
R. S. Shi
X. Shi
X. D Shi
J. J. Song
W. M. Song
Y. X. Song
S. Sosio
S. Spataro
F. Stieler
K. X. Su
P. P. Su
Y.-J. Su
G. X. Sun
H. K. Sun
J. F. Sun
L. Sun
S. S. Sun
T. Sun
W. Y. Sun
X Sun
Y. J. Sun
Y. Z. Sun
Z. T. Sun
Y. H. Tan
Y. X. Tan
C. J. Tang
G. Y. Tang
J. Tang
L. Y Tao
Q. T. Tao
J. X. Teng
V. Thoren
W. H. Tian
Y. T. Tian
I. Uman
B. Wang
D. Y. Wang
F. Wang
H. J. Wang
H. P. Wang
K. Wang
L. L. Wang
M. Wang
M. Z. Wang
Meng Wang
S. Wang
T. J. Wang
W. Wang
W. H. Wang
W. P. Wang
X. Wang
X. F. Wang
X. L. Wang
Y. D. Wang
Y. F. Wang
Y. Q. Wang
Y. Y. Wang
Ying Wang
Z. Wang
Z. Y. Wang
Ziyi Wang
Zongyuan Wang
D. H. Wei
F. Weidner
S. P. Wen
D. J. White
U. Wiedner
G. Wilkinson
M. Wolke
L. Wollenberg
J. F. Wu
L. H. Wu
L. J. Wu
X. Wu
X. H. Wu
Y. Wu
Z. Wu
L. Xia
T. Xiang
H. Xiao
S. Y. Xiao
Y. L. Xiao
Z. J. Xiao
X. H. Xie
Y. G. Xie
Y. H. Xie
Z. P. Xie
T. Y. Xing
C. F. Xu
C. J. Xu
G. F. Xu
Q. J. Xu
S. Y. Xu
W. Xu
X. P. Xu
Y. C. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
H. J. Yang
H. X. Yang
L. Yang
S. L. Yang
Y. X. Yang
Yifan Yang
Zhi Yang
M. Ye
M. H. Ye
J. H. Yin
Z. Y. You
B. X. Yu
C. X. Yu
G. Yu
J. S. Yu
T. Yu
C. Z. Yuan
L. Yuan
S. C. Yuan
X. Q. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
A. A. Zafar
X. Zeng
Y. Zeng
Y. H. Zhan
A. Q. Zhang
B. L. Zhang
B. X. Zhang
G. Y. Zhang
H. Zhang
H. H. Zhang
H. H. Zhang
H. Y. Zhang
J. L. Zhang
J. Q. Zhang
J. W. Zhang
J. Y. Zhang
J. Z. Zhang
Jianyu Zhang
Jiawei Zhang
L. M. Zhang
L. Q. Zhang
Lei Zhang
P. Zhang
Shulei Zhang
X. D. Zhang
X. M. Zhang
X. Y. Zhang
X. Y. Zhang
Y. Zhang
Y. T. Zhang
Y. H. Zhang
Yan Zhang
Yao Zhang
Z. H. Zhang
Z. Y. Zhang
Z. Y. Zhang
G. Zhao
J. Zhao
J. Y. Zhao
J. Z. Zhao
Lei Zhao
Ling Zhao
M. G. Zhao
Q. Zhao
S. J. Zhao
Y. B. Zhao
Y. X. Zhao
Z. G. Zhao
A. Zhemchugov
B. Zheng
J. P. Zheng
Y. H. Zheng
B. Zhong
C. Zhong
X. Zhong
L. P. Zhou
Q. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
Y. Z. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
S. H. Zhu
T. J. Zhu
W. J. Zhu
W. J. Zhu
Y. C. Zhu
Z. A. Zhu
B. S. Zou
J. H. Zou
author_facet The BESIII collaboration
M. Ablikim
M. N. Achasov
P. Adlarson
S. Ahmed
M. Albrecht
R. Aliberti
A. Amoroso
M. R. An
Q. An
X. H. Bai
Y. Bai
O. Bakina
R. Baldini Ferroli
I. Balossino
Y. Ban
V. Batozskaya
D. Becker
K. Begzsuren
N. Berger
M. Bertani
D. Bettoni
F. Bianchi
J. Bloms
A. Bortone
I. Boyko
R. A. Briere
A. Brueggemann
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
J. F. Chang
W. L. Chang
G. Chelkov
C. Chen
G. Chen
H. S. Chen
M. L. Chen
S. J. Chen
T. Chen
X. R. Chen
X. T. Chen
Y. B. Chen
Z. J. Chen
W. S. Cheng
G. Cibinetto
F. Cossio
J. J. Cui
H. L. Dai
J. P. Dai
X. C. Dai
A. Dbeyssi
R. E. de Boer
D. Dedovich
Z. Y. Deng
A. Denig
I. Denysenko
M. Destefanis
F. De Mori
Y. Ding
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
S. X. Du
P. Egorov
Y. L. Fan
J. Fang
S. S. Fang
Y. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
K Fischer
M. Fritsch
C. D. Fu
Y. N. Gao
Yang Gao
I. Garzia
P. T. Ge
C. Geng
E. M. Gersabeck
A Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
M. Greco
M. H. Gu
C. Y Guan
A. Q. Guo
A. Q. Guo
L. B. Guo
R. P. Guo
Y. P. Guo
A. Guskov
T. T. Han
W. Y. Han
X. Q. Hao
F. A. Harris
K. K. He
K. L. He
F. H. Heinsius
C. H. Heinz
Y. K. Heng
C. Herold
M. Himmelreich
T. Holtmann
G. Y. Hou
Y. R. Hou
Z. L. Hou
H. M. Hu
J. F. Hu
T. Hu
Y. Hu
G. S. Huang
K. X. Huang
L. Q. Huang
X. T. Huang
Y. P. Huang
Z. Huang
T. Hussain
N Hüsken
W. Imoehl
M. Irshad
S. Jaeger
S. Janchiv
Q. Ji
Q. P. Ji
X. B. Ji
X. L. Ji
Y. Y. Ji
H. B. Jiang
S. S. Jiang
X. S. Jiang
J. B. Jiao
Z. Jiao
S. Jin
Y. Jin
M. Q. Jing
T. Johansson
N. Kalantar-Nayestanaki
X. S. Kang
R. Kappert
M. Kavatsyuk
B. C. Ke
I. K. Keshk
A. Khoukaz
P. Kiese
R. Kiuchi
R. Kliemt
L. Koch
O. B. Kolcu
B. Kopf
M. Kuemmel
M. Kuessner
A. Kupsc
M. G. Kurth
W. Kühn
J. J. Lane
J. S. Lange
P. Larin
A. Lavania
L. Lavezzi
Z. H. Lei
H. Leithoff
M. Lellmann
T. Lenz
C. Li
C. Li
C. H. Li
Cheng Li
D. M. Li
F. Li
G. Li
H. Li
H. Li
H. B. Li
H. J. Li
H. N. Li
J. L. Li
J. Q. Li
J. S. Li
Ke Li
L. J Li
L. K. Li
Lei Li
M. H. Li
P. R. Li
S. X. Li
S. Y. Li
T. Li
W. D. Li
W. G. Li
X. H. Li
X. L. Li
Xiaoyu Li
Z. Y. Li
H. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
L. Z. Liao
J. Libby
A. Limphirat
C. X. Lin
D. X. Lin
T. Lin
B. J. Liu
C. X. Liu
D. Liu
F. H. Liu
Fang Liu
Feng Liu
G. M. Liu
H. M. Liu
Huanhuan Liu
Huihui Liu
J. B. Liu
J. L. Liu
J. Y. Liu
K. Liu
K. Y. Liu
Ke Liu
L. Liu
M. H. Liu
P. L. Liu
Q. Liu
S. B. Liu
T. Liu
T. Liu
W. M. Liu
X. Liu
Y. Liu
Y. B. Liu
Z. A. Liu
Z. Q. Liu
X. C. Lou
F. X. Lu
H. J. Lu
J. D. Lu
J. G. Lu
X. L. Lu
Y. Lu
Y. P. Lu
Z. H. Lu
C. L. Luo
M. X. Luo
T. Luo
X. L. Luo
X. R. Lyu
Y. F. Lyu
F. C. Ma
H. L. Ma
L. L. Ma
M. M. Ma
Q. M. Ma
R. Q. Ma
R. T. Ma
X. X. Ma
X. Y. Ma
Y. Ma
F. E. Maas
M. Maggiora
S. Maldaner
S. Malde
Q. A. Malik
A. Mangoni
Y. J. Mao
Z. P. Mao
S. Marcello
Z. X. Meng
J. G. Messchendorp
G. Mezzadri
H. Miao
T. J. Min
R. E. Mitchell
X. H. Mo
N. Yu. Muchnoi
H. Muramatsu
S. Nakhoul
Y. Nefedov
F. Nerling
I. B. Nikolaev
Z. Ning
S. Nisar
S. L. Olsen
Q. Ouyang
S. Pacetti
X. Pan
Y. Pan
A. Pathak
A. Pathak
M. Pelizaeus
H. P. Peng
K. Peters
J. Pettersson
J. L. Ping
R. G. Ping
S. Plura
S. Pogodin
R. Poling
V. Prasad
H. Qi
H. R. Qi
M. Qi
T. Y. Qi
S. Qian
W. B. Qian
Z. Qian
C. F. Qiao
J. J. Qin
L. Q. Qin
X. P. Qin
X. S. Qin
Z. H. Qin
J. F. Qiu
S. Q. Qu
S. Q. Qu
K. H. Rashid
K. Ravindran
C. F. Redmer
K. J. Ren
A. Rivetti
V. Rodin
M. Rolo
G. Rong
Ch. Rosner
M. Rump
H. S. Sang
A. Sarantsev
Y. Schelhaas
C. Schnier
K. Schoenning
M. Scodeggio
K. Y. Shan
W. Shan
X. Y. Shan
J. F. Shangguan
L. G. Shao
M. Shao
C. P. Shen
H. F. Shen
X. Y. Shen
B.-A. Shi
H. C. Shi
R. S. Shi
X. Shi
X. D Shi
J. J. Song
W. M. Song
Y. X. Song
S. Sosio
S. Spataro
F. Stieler
K. X. Su
P. P. Su
Y.-J. Su
G. X. Sun
H. K. Sun
J. F. Sun
L. Sun
S. S. Sun
T. Sun
W. Y. Sun
X Sun
Y. J. Sun
Y. Z. Sun
Z. T. Sun
Y. H. Tan
Y. X. Tan
C. J. Tang
G. Y. Tang
J. Tang
L. Y Tao
Q. T. Tao
J. X. Teng
V. Thoren
W. H. Tian
Y. T. Tian
I. Uman
B. Wang
D. Y. Wang
F. Wang
H. J. Wang
H. P. Wang
K. Wang
L. L. Wang
M. Wang
M. Z. Wang
Meng Wang
S. Wang
T. J. Wang
W. Wang
W. H. Wang
W. P. Wang
X. Wang
X. F. Wang
X. L. Wang
Y. D. Wang
Y. F. Wang
Y. Q. Wang
Y. Y. Wang
Ying Wang
Z. Wang
Z. Y. Wang
Ziyi Wang
Zongyuan Wang
D. H. Wei
F. Weidner
S. P. Wen
D. J. White
U. Wiedner
G. Wilkinson
M. Wolke
L. Wollenberg
J. F. Wu
L. H. Wu
L. J. Wu
X. Wu
X. H. Wu
Y. Wu
Z. Wu
L. Xia
T. Xiang
H. Xiao
S. Y. Xiao
Y. L. Xiao
Z. J. Xiao
X. H. Xie
Y. G. Xie
Y. H. Xie
Z. P. Xie
T. Y. Xing
C. F. Xu
C. J. Xu
G. F. Xu
Q. J. Xu
S. Y. Xu
W. Xu
X. P. Xu
Y. C. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
H. J. Yang
H. X. Yang
L. Yang
S. L. Yang
Y. X. Yang
Yifan Yang
Zhi Yang
M. Ye
M. H. Ye
J. H. Yin
Z. Y. You
B. X. Yu
C. X. Yu
G. Yu
J. S. Yu
T. Yu
C. Z. Yuan
L. Yuan
S. C. Yuan
X. Q. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
A. A. Zafar
X. Zeng
Y. Zeng
Y. H. Zhan
A. Q. Zhang
B. L. Zhang
B. X. Zhang
G. Y. Zhang
H. Zhang
H. H. Zhang
H. H. Zhang
H. Y. Zhang
J. L. Zhang
J. Q. Zhang
J. W. Zhang
J. Y. Zhang
J. Z. Zhang
Jianyu Zhang
Jiawei Zhang
L. M. Zhang
L. Q. Zhang
Lei Zhang
P. Zhang
Shulei Zhang
X. D. Zhang
X. M. Zhang
X. Y. Zhang
X. Y. Zhang
Y. Zhang
Y. T. Zhang
Y. H. Zhang
Yan Zhang
Yao Zhang
Z. H. Zhang
Z. Y. Zhang
Z. Y. Zhang
G. Zhao
J. Zhao
J. Y. Zhao
J. Z. Zhao
Lei Zhao
Ling Zhao
M. G. Zhao
Q. Zhao
S. J. Zhao
Y. B. Zhao
Y. X. Zhao
Z. G. Zhao
A. Zhemchugov
B. Zheng
J. P. Zheng
Y. H. Zheng
B. Zhong
C. Zhong
X. Zhong
L. P. Zhou
Q. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
Y. Z. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
S. H. Zhu
T. J. Zhu
W. J. Zhu
W. J. Zhu
Y. C. Zhu
Z. A. Zhu
B. S. Zou
J. H. Zou
author_sort The BESIII collaboration
collection DOAJ
description Abstract A partial wave analysis on the process e + e − → ωπ + π − is performed using 647 pb −1 of data sample collected by using the BESIII detector operating at the BEPCII storage ring at center-of-mass (c.m.) energies from 2.000 GeV to 3.080 GeV. The Born cross section of the e + e − → ωπ + π − process is measured, with precision improved by a factor of 3 compared to that of previous studies. A structure near 2.25 GeV is observed in the energy-dependent cross sections of e + e − → ωπ + π − and ωπ 0 π 0 with a statistical significance of 7.6σ, and its determined mass and width are 2232 ± 19 ± 27 MeV/c 2 and 93 ± 53 ± 20 MeV, respectively, where the first and second uncertainties are statistical and systematic, respectively. By analyzing the cross sections of subprocesses e + e − → ωf 0(500), ωf 0(980), ωf 0(1370), ωf 2(1270), and b 1(1235)π, a structure, with mass M = 2200 ± 11 ± 17 MeV/c 2 and width Γ = 74 ± 20 ± 24 MeV, is observed with a combined statistical significance of 7.9σ. The measured resonance parameters will help to reveal the nature of vector states around 2.25 GeV.
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spelling doaj.art-396f1f76bc1e461b85dd28cb888180f62023-04-30T11:04:24ZengSpringerOpenJournal of High Energy Physics1029-84792023-01-012023113410.1007/JHEP01(2023)111Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeVThe BESIII collaborationM. Ablikim0M. N. Achasov1P. Adlarson2S. Ahmed3M. Albrecht4R. Aliberti5A. Amoroso6M. R. An7Q. An8X. H. Bai9Y. Bai10O. Bakina11R. Baldini Ferroli12I. Balossino13Y. Ban14V. Batozskaya15D. Becker16K. Begzsuren17N. Berger18M. Bertani19D. Bettoni20F. Bianchi21J. Bloms22A. Bortone23I. Boyko24R. A. Briere25A. Brueggemann26H. Cai27X. Cai28A. Calcaterra29G. F. Cao30N. Cao31S. A. Cetin32J. F. Chang33W. L. Chang34G. Chelkov35C. Chen36G. Chen37H. S. Chen38M. L. Chen39S. J. Chen40T. Chen41X. R. Chen42X. T. Chen43Y. B. Chen44Z. J. Chen45W. S. Cheng46G. Cibinetto47F. Cossio48J. J. Cui49H. L. Dai50J. P. Dai51X. C. Dai52A. Dbeyssi53R. E. de Boer54D. Dedovich55Z. Y. Deng56A. Denig57I. Denysenko58M. Destefanis59F. De Mori60Y. Ding61J. Dong62L. Y. Dong63M. Y. Dong64X. Dong65S. X. Du66P. Egorov67Y. L. Fan68J. Fang69S. S. Fang70Y. Fang71R. Farinelli72L. Fava73F. Feldbauer74G. Felici75C. Q. Feng76J. H. Feng77K Fischer78M. Fritsch79C. D. Fu80Y. N. Gao81Yang Gao82I. Garzia83P. T. Ge84C. Geng85E. M. Gersabeck86A Gilman87K. Goetzen88L. Gong89W. X. Gong90W. Gradl91M. Greco92M. H. Gu93C. Y Guan94A. Q. Guo95A. Q. Guo96L. B. Guo97R. P. Guo98Y. P. Guo99A. Guskov100T. T. Han101W. Y. Han102X. Q. Hao103F. A. Harris104K. K. He105K. L. He106F. H. Heinsius107C. H. Heinz108Y. K. Heng109C. Herold110M. Himmelreich111T. Holtmann112G. Y. Hou113Y. R. Hou114Z. L. Hou115H. M. Hu116J. F. Hu117T. Hu118Y. Hu119G. S. Huang120K. X. Huang121L. Q. Huang122X. T. Huang123Y. P. Huang124Z. Huang125T. Hussain126N Hüsken127W. Imoehl128M. Irshad129S. Jaeger130S. Janchiv131Q. Ji132Q. P. Ji133X. B. Ji134X. L. Ji135Y. Y. Ji136H. B. Jiang137S. S. Jiang138X. S. Jiang139J. B. Jiao140Z. Jiao141S. Jin142Y. Jin143M. Q. Jing144T. Johansson145N. Kalantar-Nayestanaki146X. S. Kang147R. Kappert148M. Kavatsyuk149B. C. Ke150I. K. Keshk151A. Khoukaz152P. Kiese153R. Kiuchi154R. Kliemt155L. Koch156O. B. Kolcu157B. Kopf158M. Kuemmel159M. Kuessner160A. Kupsc161M. G. Kurth162W. Kühn163J. J. Lane164J. S. Lange165P. Larin166A. Lavania167L. Lavezzi168Z. H. Lei169H. Leithoff170M. Lellmann171T. Lenz172C. Li173C. Li174C. H. Li175Cheng Li176D. M. Li177F. Li178G. Li179H. Li180H. Li181H. B. Li182H. J. Li183H. N. Li184J. L. Li185J. Q. Li186J. S. Li187Ke Li188L. J Li189L. K. Li190Lei Li191M. H. Li192P. R. Li193S. X. Li194S. Y. Li195T. Li196W. D. Li197W. G. Li198X. H. Li199X. L. Li200Xiaoyu Li201Z. Y. Li202H. Liang203H. Liang204H. Liang205Y. F. Liang206Y. T. Liang207G. R. Liao208L. Z. Liao209J. Libby210A. Limphirat211C. X. Lin212D. X. Lin213T. Lin214B. J. Liu215C. X. Liu216D. Liu217F. H. Liu218Fang Liu219Feng Liu220G. M. Liu221H. M. Liu222Huanhuan Liu223Huihui Liu224J. B. Liu225J. L. Liu226J. Y. Liu227K. Liu228K. Y. Liu229Ke Liu230L. Liu231M. H. Liu232P. L. Liu233Q. Liu234S. B. Liu235T. Liu236T. Liu237W. M. Liu238X. Liu239Y. Liu240Y. B. Liu241Z. A. Liu242Z. Q. Liu243X. C. Lou244F. X. Lu245H. J. Lu246J. D. Lu247J. G. Lu248X. L. Lu249Y. Lu250Y. P. Lu251Z. H. Lu252C. L. Luo253M. X. Luo254T. Luo255X. L. Luo256X. R. Lyu257Y. F. Lyu258F. C. Ma259H. L. Ma260L. L. Ma261M. M. Ma262Q. M. Ma263R. Q. Ma264R. T. Ma265X. X. Ma266X. Y. Ma267Y. Ma268F. E. Maas269M. Maggiora270S. Maldaner271S. Malde272Q. A. Malik273A. Mangoni274Y. J. Mao275Z. P. Mao276S. Marcello277Z. X. Meng278J. G. Messchendorp279G. Mezzadri280H. Miao281T. J. Min282R. E. Mitchell283X. H. Mo284N. Yu. Muchnoi285H. Muramatsu286S. Nakhoul287Y. Nefedov288F. Nerling289I. B. Nikolaev290Z. Ning291S. Nisar292S. L. Olsen293Q. Ouyang294S. Pacetti295X. Pan296Y. Pan297A. Pathak298A. Pathak299M. Pelizaeus300H. P. Peng301K. Peters302J. Pettersson303J. L. Ping304R. G. Ping305S. Plura306S. Pogodin307R. Poling308V. Prasad309H. Qi310H. R. Qi311M. Qi312T. Y. Qi313S. Qian314W. B. Qian315Z. Qian316C. F. Qiao317J. J. Qin318L. Q. Qin319X. P. Qin320X. S. Qin321Z. H. Qin322J. F. Qiu323S. Q. Qu324S. Q. Qu325K. H. Rashid326K. Ravindran327C. F. Redmer328K. J. Ren329A. Rivetti330V. Rodin331M. Rolo332G. Rong333Ch. Rosner334M. Rump335H. S. Sang336A. Sarantsev337Y. Schelhaas338C. Schnier339K. Schoenning340M. Scodeggio341K. Y. Shan342W. Shan343X. Y. Shan344J. F. Shangguan345L. G. Shao346M. Shao347C. P. Shen348H. F. Shen349X. Y. Shen350B.-A. Shi351H. C. Shi352R. S. Shi353X. Shi354X. D Shi355J. J. Song356W. M. Song357Y. X. Song358S. Sosio359S. Spataro360F. Stieler361K. X. Su362P. P. Su363Y.-J. Su364G. X. Sun365H. K. Sun366J. F. Sun367L. Sun368S. S. Sun369T. Sun370W. Y. Sun371X Sun372Y. J. Sun373Y. Z. Sun374Z. T. Sun375Y. H. Tan376Y. X. Tan377C. J. Tang378G. Y. Tang379J. Tang380L. Y Tao381Q. T. Tao382J. X. Teng383V. Thoren384W. H. Tian385Y. T. Tian386I. Uman387B. Wang388D. Y. Wang389F. Wang390H. J. Wang391H. P. Wang392K. Wang393L. L. Wang394M. Wang395M. Z. Wang396Meng Wang397S. Wang398T. J. Wang399W. Wang400W. H. Wang401W. P. Wang402X. Wang403X. F. Wang404X. L. Wang405Y. D. Wang406Y. F. Wang407Y. Q. Wang408Y. Y. Wang409Ying Wang410Z. Wang411Z. Y. Wang412Ziyi Wang413Zongyuan Wang414D. H. Wei415F. Weidner416S. P. Wen417D. J. White418U. Wiedner419G. Wilkinson420M. Wolke421L. Wollenberg422J. F. Wu423L. H. Wu424L. J. Wu425X. Wu426X. H. Wu427Y. Wu428Z. Wu429L. Xia430T. Xiang431H. Xiao432S. Y. Xiao433Y. L. Xiao434Z. J. Xiao435X. H. Xie436Y. G. Xie437Y. H. Xie438Z. P. Xie439T. Y. Xing440C. F. Xu441C. J. Xu442G. F. Xu443Q. J. Xu444S. Y. Xu445W. Xu446X. P. Xu447Y. C. Xu448F. Yan449L. Yan450W. B. Yan451W. C. Yan452H. J. Yang453H. X. Yang454L. Yang455S. L. Yang456Y. X. Yang457Yifan Yang458Zhi Yang459M. Ye460M. H. Ye461J. H. Yin462Z. Y. You463B. X. Yu464C. X. Yu465G. Yu466J. S. Yu467T. Yu468C. Z. Yuan469L. Yuan470S. C. Yuan471X. Q. Yuan472Y. Yuan473Z. Y. Yuan474C. X. Yue475A. A. Zafar476X. Zeng477Y. Zeng478Y. H. Zhan479A. Q. Zhang480B. L. Zhang481B. X. Zhang482G. Y. Zhang483H. Zhang484H. H. Zhang485H. H. Zhang486H. Y. Zhang487J. L. Zhang488J. Q. Zhang489J. W. Zhang490J. Y. Zhang491J. Z. Zhang492Jianyu Zhang493Jiawei Zhang494L. M. Zhang495L. Q. Zhang496Lei Zhang497P. Zhang498Shulei Zhang499X. D. Zhang500X. M. Zhang501X. Y. Zhang502X. Y. Zhang503Y. Zhang504Y. T. Zhang505Y. H. Zhang506Yan Zhang507Yao Zhang508Z. H. Zhang509Z. Y. Zhang510Z. Y. Zhang511G. Zhao512J. Zhao513J. Y. Zhao514J. Z. Zhao515Lei Zhao516Ling Zhao517M. G. Zhao518Q. Zhao519S. J. Zhao520Y. B. Zhao521Y. X. Zhao522Z. G. Zhao523A. Zhemchugov524B. Zheng525J. P. Zheng526Y. H. Zheng527B. Zhong528C. Zhong529X. Zhong530L. P. Zhou531Q. Zhou532X. Zhou533X. K. Zhou534X. R. Zhou535X. Y. Zhou536Y. Z. Zhou537A. N. Zhu538J. Zhu539K. Zhu540K. J. Zhu541S. H. Zhu542T. J. Zhu543W. J. Zhu544W. J. Zhu545Y. C. Zhu546Z. A. Zhu547B. S. Zou548J. H. Zou549Institute of High Energy PhysicsG.I. Budker Institute of Nuclear Physics SB RAS (BINP)Uppsala UniversityHelmholtz Institute MainzBochum Ruhr-UniversityJohannes Gutenberg University of MainzUniversity of TurinLiaoning Normal UniversityUniversity of Science and Technology of ChinaUniversity of JinanSoutheast UniversityJoint Institute for Nuclear ResearchINFN Laboratori Nazionali di FrascatiINFN Sezione di FerraraPeking UniversityInstitute of High Energy PhysicsJohannes Gutenberg University of MainzInstitute of Physics and TechnologyJohannes Gutenberg University of MainzINFN Laboratori Nazionali di FrascatiINFN Sezione di FerraraUniversity of TurinUniversity of MuensterUniversity of TurinJoint Institute for Nuclear ResearchCarnegie Mellon UniversityUniversity of MuensterWuhan UniversityInstitute of High Energy PhysicsINFN Laboratori Nazionali di FrascatiInstitute of High Energy PhysicsInstitute of High Energy PhysicsTurkish Accelerator Center Particle Factory Group, Istinye UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsJoint Institute for Nuclear ResearchNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsNanjing UniversityInstitute of High Energy PhysicsInstitute of Modern PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsHunan UniversityINFNINFN Sezione di FerraraINFNShandong UniversityInstitute of High Energy PhysicsYunnan UniversityInstitute of High Energy PhysicsHelmholtz Institute MainzBochum Ruhr-UniversityJoint Institute for Nuclear ResearchInstitute of High Energy PhysicsJohannes Gutenberg University of MainzJoint Institute for Nuclear ResearchUniversity of TurinUniversity of TurinLiaoning UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsWuhan UniversityZhengzhou UniversityJoint Institute for Nuclear ResearchWuhan UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsINFN Sezione di FerraraUniversity of Eastern PiedmontBochum Ruhr-UniversityINFN Laboratori Nazionali di FrascatiUniversity of Science and Technology of ChinaSun Yat-Sen UniversityUniversity of OxfordBochum Ruhr-UniversityInstitute of High Energy PhysicsPeking UniversityUniversity of Science and Technology of ChinaINFN Sezione di FerraraWuhan UniversitySun Yat-Sen UniversityUniversity of ManchesterUniversity of OxfordGSI Helmholtzcentre for Heavy Ion Research GmbHLiaoning UniversityInstitute of High Energy PhysicsJohannes Gutenberg University of MainzUniversity of TurinInstitute of High Energy PhysicsInstitute of High Energy PhysicsIndiana UniversityInstitute of Modern PhysicsNanjing Normal UniversityShandong Normal UniversityFudan UniversityJoint Institute for Nuclear ResearchShandong UniversityLiaoning Normal UniversityHenan Normal UniversityUniversity of HawaiiSoochow UniversityInstitute of High Energy PhysicsBochum Ruhr-UniversityJohannes Gutenberg University of MainzInstitute of High Energy PhysicsSuranaree University of TechnologyGSI Helmholtzcentre for Heavy Ion Research GmbHBochum Ruhr-UniversityInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsInstitute of High Energy PhysicsSouth China Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaSun Yat-Sen UniversityUniversity of South ChinaShandong UniversityInstitute of High Energy PhysicsPeking UniversityUniversity of the PunjabIndiana UniversityIndiana UniversityUniversity of Science and Technology of ChinaBochum Ruhr-UniversityInstitute of Physics and TechnologyInstitute of High Energy PhysicsHenan Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsShandong UniversityShandong UniversityLiaoning Normal UniversityInstitute of High Energy PhysicsShandong UniversityHuangshan CollegeNanjing UniversityUniversity of JinanInstitute of High Energy PhysicsUppsala UniversityUniversity of GroningenLiaoning UniversityUniversity of GroningenUniversity of GroningenZhengzhou UniversityBochum Ruhr-UniversityUniversity of MuensterJohannes Gutenberg University of MainzInstitute of High Energy PhysicsGSI Helmholtzcentre for Heavy Ion Research GmbHJustus-Liebig-Universitaet Giessen, II. Physikalisches InstitutTurkish Accelerator Center Particle Factory Group, Istinye UniversityBochum Ruhr-UniversityBochum Ruhr-UniversityBochum Ruhr-UniversityNational Centre for Nuclear ResearchInstitute of High Energy PhysicsJustus-Liebig-Universitaet Giessen, II. Physikalisches InstitutUniversity of ManchesterJustus-Liebig-Universitaet Giessen, II. Physikalisches InstitutHelmholtz Institute MainzIndian Institute of Technology MadrasUniversity of TurinUniversity of Science and Technology of ChinaJohannes Gutenberg University of MainzJohannes Gutenberg University of MainzJohannes Gutenberg University of MainzQufu Normal UniversityNankai UniversityLiaoning Normal UniversityUniversity of Science and Technology of ChinaZhengzhou UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaShanxi Normal UniversityInstitute of High Energy PhysicsHenan Normal UniversitySouth China Normal UniversityShandong UniversityBochum Ruhr-UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsBeijing Institute of Petrochemical TechnologyNankai UniversityLanzhou UniversityFudan UniversityTsinghua UniversityShandong UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaShandong UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityJilin UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaSichuan UniversityInstitute of Modern PhysicsGuangxi Normal UniversityInstitute of High Energy PhysicsIndian Institute of Technology MadrasSuranaree University of TechnologySun Yat-Sen UniversityInstitute of Modern PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsHelmholtz Institute MainzShanxi UniversityInstitute of High Energy PhysicsCentral China Normal UniversitySouth China Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan University of Science and TechnologyUniversity of Science and Technology of ChinaUniversity of South ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsLiaoning UniversityHenan University of TechnologyUniversity of Science and Technology of ChinaFudan UniversityInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesUniversity of Science and Technology of ChinaFudan UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaLanzhou UniversityLanzhou UniversityNankai UniversityInstitute of High Energy PhysicsShandong UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityHuangshan CollegeInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsNanjing Normal UniversityZhejiang UniversityFudan UniversityInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesNankai UniversityLiaoning UniversityInstitute of High Energy PhysicsShandong UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsInstitute of High Energy PhysicsPeking UniversityHelmholtz Institute MainzUniversity of TurinBochum Ruhr-UniversityUniversity of OxfordUniversity of the PunjabINFN Sezione di PerugiaPeking UniversityInstitute of High Energy PhysicsUniversity of TurinUniversity of JinanUniversity of GroningenINFN Sezione di FerraraInstitute of High Energy PhysicsNanjing UniversityIndiana UniversityInstitute of High Energy PhysicsG.I. Budker Institute of Nuclear Physics SB RAS (BINP)University of MinnesotaGSI Helmholtzcentre for Heavy Ion Research GmbHJoint Institute for Nuclear ResearchGSI Helmholtzcentre for Heavy Ion Research GmbHG.I. 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of High Energy PhysicsNankai UniversityTsinghua UniversityUniversity of the PunjabIndian Institute of Technology MadrasJohannes Gutenberg University of MainzLiaoning Normal UniversityINFNUniversity of GroningenINFNInstitute of High Energy PhysicsHelmholtz Institute MainzUniversity of MuensterUniversity of Science and Technology of ChinaJoint Institute for Nuclear ResearchJohannes Gutenberg University of MainzBochum Ruhr-UniversityUppsala UniversityINFN Sezione di FerraraFudan UniversityHunan Normal UniversityUniversity of Science and Technology of ChinaSoochow UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaFudan UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaHenan Normal UniversityJilin UniversityPeking UniversityUniversity of TurinUniversity of TurinJohannes Gutenberg University of MainzWuhan UniversitySoochow UniversityUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityWuhan UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsJilin UniversityHunan UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsShandong UniversityWuhan UniversityUniversity of Science and Technology of ChinaSichuan UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityUniversity of South ChinaHunan UniversityUniversity of Science and Technology of ChinaUppsala UniversityShanxi Normal UniversityInstitute of Modern PhysicsNear East University, Nicosia, North CyprusInstitute of High Energy PhysicsPeking UniversityUniversity of South ChinaLanzhou UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsShandong UniversityPeking UniversityInstitute of High Energy PhysicsFudan UniversityNankai UniversitySun Yat-Sen UniversityWuhan UniversityUniversity of Science and Technology of ChinaPeking UniversityLanzhou UniversityFudan UniversityNorth China Electric Power UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsLanzhou UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsGuangxi Normal UniversityUniversity of MuensterInstitute of High Energy PhysicsUniversity of ManchesterBochum Ruhr-UniversityUniversity of OxfordUppsala UniversityBochum Ruhr-UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsFudan UniversityJilin UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaPeking UniversityFudan UniversityInstitute of High Energy PhysicsFudan UniversityNanjing Normal UniversityPeking UniversityInstitute of High Energy PhysicsCentral China Normal UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsSun Yat-Sen UniversityInstitute of High Energy PhysicsHangzhou Normal UniversityUniversity of Science and Technology LiaoningInstitute of High Energy PhysicsSoochow UniversityUniversity of Chinese Academy of SciencesFudan UniversityFudan UniversityUniversity of Science and Technology of ChinaZhengzhou UniversityShanghai Jiao Tong UniversityInstitute of High Energy PhysicsShanxi Normal UniversityUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of Modern PhysicsInstitute of High Energy PhysicsChina Center of Advanced Science and TechnologyInstitute of High Energy PhysicsSun Yat-Sen UniversityInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsHunan UniversityUniversity of South ChinaInstitute of High Energy PhysicsBeihang UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsSun Yat-Sen UniversityLiaoning Normal UniversityUniversity of the PunjabCentral China Normal UniversityHunan UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityUniversity of Science and Technology of ChinaJilin UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsXinyang Normal UniversityNanjing Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsTsinghua UniversitySun Yat-Sen UniversityNanjing UniversityInstitute of High Energy PhysicsHunan UniversityNorth China Electric Power UniversityInstitute of High Energy PhysicsShandong UniversitySoochow UniversityUniversity of OxfordZhengzhou UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsNankai UniversityWuhan UniversityInstitute of High Energy PhysicsLiaoning Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsZhengzhou UniversityInstitute of High Energy PhysicsInstitute of Modern PhysicsUniversity of Science and Technology of ChinaJoint Institute for Nuclear ResearchUniversity of South ChinaInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesNanjing Normal UniversityUniversity of South ChinaSun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsWuhan UniversityUniversity of Chinese Academy of SciencesUniversity of Science and Technology of ChinaLiaoning Normal UniversityFudan UniversityInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology LiaoningXinyang Normal UniversityFudan UniversityNankai UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsAbstract A partial wave analysis on the process e + e − → ωπ + π − is performed using 647 pb −1 of data sample collected by using the BESIII detector operating at the BEPCII storage ring at center-of-mass (c.m.) energies from 2.000 GeV to 3.080 GeV. The Born cross section of the e + e − → ωπ + π − process is measured, with precision improved by a factor of 3 compared to that of previous studies. A structure near 2.25 GeV is observed in the energy-dependent cross sections of e + e − → ωπ + π − and ωπ 0 π 0 with a statistical significance of 7.6σ, and its determined mass and width are 2232 ± 19 ± 27 MeV/c 2 and 93 ± 53 ± 20 MeV, respectively, where the first and second uncertainties are statistical and systematic, respectively. By analyzing the cross sections of subprocesses e + e − → ωf 0(500), ωf 0(980), ωf 0(1370), ωf 2(1270), and b 1(1235)π, a structure, with mass M = 2200 ± 11 ± 17 MeV/c 2 and width Γ = 74 ± 20 ± 24 MeV, is observed with a combined statistical significance of 7.9σ. The measured resonance parameters will help to reveal the nature of vector states around 2.25 GeV.https://doi.org/10.1007/JHEP01(2023)111e +-e − ExperimentsParticle and Resonance ProductionVector Boson Production
spellingShingle The BESIII collaboration
M. Ablikim
M. N. Achasov
P. Adlarson
S. Ahmed
M. Albrecht
R. Aliberti
A. Amoroso
M. R. An
Q. An
X. H. Bai
Y. Bai
O. Bakina
R. Baldini Ferroli
I. Balossino
Y. Ban
V. Batozskaya
D. Becker
K. Begzsuren
N. Berger
M. Bertani
D. Bettoni
F. Bianchi
J. Bloms
A. Bortone
I. Boyko
R. A. Briere
A. Brueggemann
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
J. F. Chang
W. L. Chang
G. Chelkov
C. Chen
G. Chen
H. S. Chen
M. L. Chen
S. J. Chen
T. Chen
X. R. Chen
X. T. Chen
Y. B. Chen
Z. J. Chen
W. S. Cheng
G. Cibinetto
F. Cossio
J. J. Cui
H. L. Dai
J. P. Dai
X. C. Dai
A. Dbeyssi
R. E. de Boer
D. Dedovich
Z. Y. Deng
A. Denig
I. Denysenko
M. Destefanis
F. De Mori
Y. Ding
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
S. X. Du
P. Egorov
Y. L. Fan
J. Fang
S. S. Fang
Y. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
K Fischer
M. Fritsch
C. D. Fu
Y. N. Gao
Yang Gao
I. Garzia
P. T. Ge
C. Geng
E. M. Gersabeck
A Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
M. Greco
M. H. Gu
C. Y Guan
A. Q. Guo
A. Q. Guo
L. B. Guo
R. P. Guo
Y. P. Guo
A. Guskov
T. T. Han
W. Y. Han
X. Q. Hao
F. A. Harris
K. K. He
K. L. He
F. H. Heinsius
C. H. Heinz
Y. K. Heng
C. Herold
M. Himmelreich
T. Holtmann
G. Y. Hou
Y. R. Hou
Z. L. Hou
H. M. Hu
J. F. Hu
T. Hu
Y. Hu
G. S. Huang
K. X. Huang
L. Q. Huang
X. T. Huang
Y. P. Huang
Z. Huang
T. Hussain
N Hüsken
W. Imoehl
M. Irshad
S. Jaeger
S. Janchiv
Q. Ji
Q. P. Ji
X. B. Ji
X. L. Ji
Y. Y. Ji
H. B. Jiang
S. S. Jiang
X. S. Jiang
J. B. Jiao
Z. Jiao
S. Jin
Y. Jin
M. Q. Jing
T. Johansson
N. Kalantar-Nayestanaki
X. S. Kang
R. Kappert
M. Kavatsyuk
B. C. Ke
I. K. Keshk
A. Khoukaz
P. Kiese
R. Kiuchi
R. Kliemt
L. Koch
O. B. Kolcu
B. Kopf
M. Kuemmel
M. Kuessner
A. Kupsc
M. G. Kurth
W. Kühn
J. J. Lane
J. S. Lange
P. Larin
A. Lavania
L. Lavezzi
Z. H. Lei
H. Leithoff
M. Lellmann
T. Lenz
C. Li
C. Li
C. H. Li
Cheng Li
D. M. Li
F. Li
G. Li
H. Li
H. Li
H. B. Li
H. J. Li
H. N. Li
J. L. Li
J. Q. Li
J. S. Li
Ke Li
L. J Li
L. K. Li
Lei Li
M. H. Li
P. R. Li
S. X. Li
S. Y. Li
T. Li
W. D. Li
W. G. Li
X. H. Li
X. L. Li
Xiaoyu Li
Z. Y. Li
H. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
L. Z. Liao
J. Libby
A. Limphirat
C. X. Lin
D. X. Lin
T. Lin
B. J. Liu
C. X. Liu
D. Liu
F. H. Liu
Fang Liu
Feng Liu
G. M. Liu
H. M. Liu
Huanhuan Liu
Huihui Liu
J. B. Liu
J. L. Liu
J. Y. Liu
K. Liu
K. Y. Liu
Ke Liu
L. Liu
M. H. Liu
P. L. Liu
Q. Liu
S. B. Liu
T. Liu
T. Liu
W. M. Liu
X. Liu
Y. Liu
Y. B. Liu
Z. A. Liu
Z. Q. Liu
X. C. Lou
F. X. Lu
H. J. Lu
J. D. Lu
J. G. Lu
X. L. Lu
Y. Lu
Y. P. Lu
Z. H. Lu
C. L. Luo
M. X. Luo
T. Luo
X. L. Luo
X. R. Lyu
Y. F. Lyu
F. C. Ma
H. L. Ma
L. L. Ma
M. M. Ma
Q. M. Ma
R. Q. Ma
R. T. Ma
X. X. Ma
X. Y. Ma
Y. Ma
F. E. Maas
M. Maggiora
S. Maldaner
S. Malde
Q. A. Malik
A. Mangoni
Y. J. Mao
Z. P. Mao
S. Marcello
Z. X. Meng
J. G. Messchendorp
G. Mezzadri
H. Miao
T. J. Min
R. E. Mitchell
X. H. Mo
N. Yu. Muchnoi
H. Muramatsu
S. Nakhoul
Y. Nefedov
F. Nerling
I. B. Nikolaev
Z. Ning
S. Nisar
S. L. Olsen
Q. Ouyang
S. Pacetti
X. Pan
Y. Pan
A. Pathak
A. Pathak
M. Pelizaeus
H. P. Peng
K. Peters
J. Pettersson
J. L. Ping
R. G. Ping
S. Plura
S. Pogodin
R. Poling
V. Prasad
H. Qi
H. R. Qi
M. Qi
T. Y. Qi
S. Qian
W. B. Qian
Z. Qian
C. F. Qiao
J. J. Qin
L. Q. Qin
X. P. Qin
X. S. Qin
Z. H. Qin
J. F. Qiu
S. Q. Qu
S. Q. Qu
K. H. Rashid
K. Ravindran
C. F. Redmer
K. J. Ren
A. Rivetti
V. Rodin
M. Rolo
G. Rong
Ch. Rosner
M. Rump
H. S. Sang
A. Sarantsev
Y. Schelhaas
C. Schnier
K. Schoenning
M. Scodeggio
K. Y. Shan
W. Shan
X. Y. Shan
J. F. Shangguan
L. G. Shao
M. Shao
C. P. Shen
H. F. Shen
X. Y. Shen
B.-A. Shi
H. C. Shi
R. S. Shi
X. Shi
X. D Shi
J. J. Song
W. M. Song
Y. X. Song
S. Sosio
S. Spataro
F. Stieler
K. X. Su
P. P. Su
Y.-J. Su
G. X. Sun
H. K. Sun
J. F. Sun
L. Sun
S. S. Sun
T. Sun
W. Y. Sun
X Sun
Y. J. Sun
Y. Z. Sun
Z. T. Sun
Y. H. Tan
Y. X. Tan
C. J. Tang
G. Y. Tang
J. Tang
L. Y Tao
Q. T. Tao
J. X. Teng
V. Thoren
W. H. Tian
Y. T. Tian
I. Uman
B. Wang
D. Y. Wang
F. Wang
H. J. Wang
H. P. Wang
K. Wang
L. L. Wang
M. Wang
M. Z. Wang
Meng Wang
S. Wang
T. J. Wang
W. Wang
W. H. Wang
W. P. Wang
X. Wang
X. F. Wang
X. L. Wang
Y. D. Wang
Y. F. Wang
Y. Q. Wang
Y. Y. Wang
Ying Wang
Z. Wang
Z. Y. Wang
Ziyi Wang
Zongyuan Wang
D. H. Wei
F. Weidner
S. P. Wen
D. J. White
U. Wiedner
G. Wilkinson
M. Wolke
L. Wollenberg
J. F. Wu
L. H. Wu
L. J. Wu
X. Wu
X. H. Wu
Y. Wu
Z. Wu
L. Xia
T. Xiang
H. Xiao
S. Y. Xiao
Y. L. Xiao
Z. J. Xiao
X. H. Xie
Y. G. Xie
Y. H. Xie
Z. P. Xie
T. Y. Xing
C. F. Xu
C. J. Xu
G. F. Xu
Q. J. Xu
S. Y. Xu
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X. P. Xu
Y. C. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
H. J. Yang
H. X. Yang
L. Yang
S. L. Yang
Y. X. Yang
Yifan Yang
Zhi Yang
M. Ye
M. H. Ye
J. H. Yin
Z. Y. You
B. X. Yu
C. X. Yu
G. Yu
J. S. Yu
T. Yu
C. Z. Yuan
L. Yuan
S. C. Yuan
X. Q. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
A. A. Zafar
X. Zeng
Y. Zeng
Y. H. Zhan
A. Q. Zhang
B. L. Zhang
B. X. Zhang
G. Y. Zhang
H. Zhang
H. H. Zhang
H. H. Zhang
H. Y. Zhang
J. L. Zhang
J. Q. Zhang
J. W. Zhang
J. Y. Zhang
J. Z. Zhang
Jianyu Zhang
Jiawei Zhang
L. M. Zhang
L. Q. Zhang
Lei Zhang
P. Zhang
Shulei Zhang
X. D. Zhang
X. M. Zhang
X. Y. Zhang
X. Y. Zhang
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Y. T. Zhang
Y. H. Zhang
Yan Zhang
Yao Zhang
Z. H. Zhang
Z. Y. Zhang
Z. Y. Zhang
G. Zhao
J. Zhao
J. Y. Zhao
J. Z. Zhao
Lei Zhao
Ling Zhao
M. G. Zhao
Q. Zhao
S. J. Zhao
Y. B. Zhao
Y. X. Zhao
Z. G. Zhao
A. Zhemchugov
B. Zheng
J. P. Zheng
Y. H. Zheng
B. Zhong
C. Zhong
X. Zhong
L. P. Zhou
Q. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
Y. Z. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
S. H. Zhu
T. J. Zhu
W. J. Zhu
W. J. Zhu
Y. C. Zhu
Z. A. Zhu
B. S. Zou
J. H. Zou
Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV
Journal of High Energy Physics
e +-e − Experiments
Particle and Resonance Production
Vector Boson Production
title Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV
title_full Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV
title_fullStr Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV
title_full_unstemmed Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV
title_short Measurement of e + e − → ωπ + π − cross section at s $$ \sqrt{s} $$ = 2.000 to 3.080 GeV
title_sort measurement of e e ωπ π cross section at s sqrt s 2 000 to 3 080 gev
topic e +-e − Experiments
Particle and Resonance Production
Vector Boson Production
url https://doi.org/10.1007/JHEP01(2023)111
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AT yfang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rfarinelli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lfava measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ffeldbauer measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gfelici measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cqfeng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jhfeng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kfischer measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mfritsch measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cdfu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yngao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yanggao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT igarzia measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ptge measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cgeng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT emgersabeck measurementofeeōppcrosssectionatssqrts2000to3080gev
AT agilman measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kgoetzen measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lgong measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wxgong measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wgradl measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mgreco measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mhgu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cyguan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT aqguo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT aqguo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lbguo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rpguo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ypguo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT aguskov measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tthan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wyhan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xqhao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT faharris measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kkhe measurementofeeōppcrosssectionatssqrts2000to3080gev
AT klhe measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fhheinsius measurementofeeōppcrosssectionatssqrts2000to3080gev
AT chheinz measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ykheng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cherold measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mhimmelreich measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tholtmann measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gyhou measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yrhou measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zlhou measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hmhu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jfhu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT thu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yhu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gshuang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kxhuang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lqhuang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xthuang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yphuang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zhuang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT thussain measurementofeeōppcrosssectionatssqrts2000to3080gev
AT nhusken measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wimoehl measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mirshad measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sjaeger measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sjanchiv measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qji measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qpji measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xbji measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xlji measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yyji measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hbjiang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ssjiang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xsjiang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jbjiao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zjiao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sjin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yjin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mqjing measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tjohansson measurementofeeōppcrosssectionatssqrts2000to3080gev
AT nkalantarnayestanaki measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xskang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rkappert measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mkavatsyuk measurementofeeōppcrosssectionatssqrts2000to3080gev
AT bcke measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ikkeshk measurementofeeōppcrosssectionatssqrts2000to3080gev
AT akhoukaz measurementofeeōppcrosssectionatssqrts2000to3080gev
AT pkiese measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rkiuchi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rkliemt measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lkoch measurementofeeōppcrosssectionatssqrts2000to3080gev
AT obkolcu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT bkopf measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mkuemmel measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mkuessner measurementofeeōppcrosssectionatssqrts2000to3080gev
AT akupsc measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mgkurth measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wkuhn measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jjlane measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jslange measurementofeeōppcrosssectionatssqrts2000to3080gev
AT plarin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT alavania measurementofeeōppcrosssectionatssqrts2000to3080gev
AT llavezzi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zhlei measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hleithoff measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mlellmann measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tlenz measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT chli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT chengli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT dmli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hbli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hjli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hnli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jlli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jqli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jsli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT keli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ljli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lkli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT leili measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mhli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT prli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sxli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT syli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wdli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wgli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xhli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xlli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xiaoyuli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zyli measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hliang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hliang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hliang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yfliang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ytliang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT grliao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lzliao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jlibby measurementofeeōppcrosssectionatssqrts2000to3080gev
AT alimphirat measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cxlin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT dxlin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tlin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT bjliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cxliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT dliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fhliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fangliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fengliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gmliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hmliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT huanhuanliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT huihuiliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jbliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jlliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jyliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kyliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT keliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mhliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT plliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sbliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wmliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ybliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zaliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zqliu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xclou measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fxlu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hjlu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jdlu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jglu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xllu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ylu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yplu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zhlu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT clluo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mxluo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tluo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xlluo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xrlyu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yflyu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fcma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hlma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT llma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mmma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qmma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rqma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rtma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xxma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xyma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yma measurementofeeōppcrosssectionatssqrts2000to3080gev
AT femaas measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mmaggiora measurementofeeōppcrosssectionatssqrts2000to3080gev
AT smaldaner measurementofeeōppcrosssectionatssqrts2000to3080gev
AT smalde measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qamalik measurementofeeōppcrosssectionatssqrts2000to3080gev
AT amangoni measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yjmao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zpmao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT smarcello measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zxmeng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jgmesschendorp measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gmezzadri measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hmiao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tjmin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT remitchell measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xhmo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT nyumuchnoi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hmuramatsu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT snakhoul measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ynefedov measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fnerling measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ibnikolaev measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zning measurementofeeōppcrosssectionatssqrts2000to3080gev
AT snisar measurementofeeōppcrosssectionatssqrts2000to3080gev
AT slolsen measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qouyang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT spacetti measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xpan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ypan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT apathak measurementofeeōppcrosssectionatssqrts2000to3080gev
AT apathak measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mpelizaeus measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hppeng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kpeters measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jpettersson measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jlping measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rgping measurementofeeōppcrosssectionatssqrts2000to3080gev
AT splura measurementofeeōppcrosssectionatssqrts2000to3080gev
AT spogodin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rpoling measurementofeeōppcrosssectionatssqrts2000to3080gev
AT vprasad measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hqi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hrqi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mqi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tyqi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sqian measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wbqian measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zqian measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cfqiao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jjqin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lqqin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xpqin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xsqin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zhqin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jfqiu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sqqu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sqqu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT khrashid measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kravindran measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cfredmer measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kjren measurementofeeōppcrosssectionatssqrts2000to3080gev
AT arivetti measurementofeeōppcrosssectionatssqrts2000to3080gev
AT vrodin measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mrolo measurementofeeōppcrosssectionatssqrts2000to3080gev
AT grong measurementofeeōppcrosssectionatssqrts2000to3080gev
AT chrosner measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mrump measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hssang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT asarantsev measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yschelhaas measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cschnier measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kschoenning measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mscodeggio measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kyshan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wshan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xyshan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jfshangguan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lgshao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mshao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cpshen measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hfshen measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xyshen measurementofeeōppcrosssectionatssqrts2000to3080gev
AT bashi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hcshi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT rsshi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xshi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xdshi measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jjsong measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wmsong measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yxsong measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ssosio measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sspataro measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fstieler measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kxsu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ppsu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yjsu measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gxsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hksun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jfsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT sssun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wysun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yjsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yzsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ztsun measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yhtan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yxtan measurementofeeōppcrosssectionatssqrts2000to3080gev
AT cjtang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gytang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jtang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT lytao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT qttao measurementofeeōppcrosssectionatssqrts2000to3080gev
AT jxteng measurementofeeōppcrosssectionatssqrts2000to3080gev
AT vthoren measurementofeeōppcrosssectionatssqrts2000to3080gev
AT whtian measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yttian measurementofeeōppcrosssectionatssqrts2000to3080gev
AT iuman measurementofeeōppcrosssectionatssqrts2000to3080gev
AT bwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT dywang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hjwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT hpwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT kwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT llwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mzwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT mengwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT swang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT tjwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT whwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT wpwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xfwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT xlwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ydwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yfwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yqwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yywang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT yingwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zywang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT ziyiwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT zongyuanwang measurementofeeōppcrosssectionatssqrts2000to3080gev
AT dhwei measurementofeeōppcrosssectionatssqrts2000to3080gev
AT fweidner measurementofeeōppcrosssectionatssqrts2000to3080gev
AT spwen measurementofeeōppcrosssectionatssqrts2000to3080gev
AT djwhite measurementofeeōppcrosssectionatssqrts2000to3080gev
AT uwiedner measurementofeeōppcrosssectionatssqrts2000to3080gev
AT gwilkinson measurementofeeōppcrosssectionatssqrts2000to3080gev
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