Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′

Abstract Using data collected with the BESIII detector in e + e − collisions at center-of-mass energies between 4.178 and 4.226 GeV and corresponding to 6.32 fb −1 of integrated luminosity, we report the amplitude analysis and branching-fraction measurement of the D s + $$ {D}_s^{+} $$ → π + π 0 η′...

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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. B. Ferroli, I. Balossino, Y. Ban, K. Begzsuren, N. Berger, M. Bertani, D. Bettoni, F. Bianchi, J. Bloms, A. Bortone, I. Boyko, R. A. Briere, H. Cai, X. Cai, A. Calcaterra, G. F. Cao, N. Cao, S. A. Cetin, J. F. Chang, W. L. Chang, G. Chelkov, D. Y. Chen, G. Chen, H. S. Chen, M. L. Chen, S. J. Chen, X. R. Chen, Y. B. Chen, Z. J. Chen, W. S. Cheng, G. Cibinetto, F. Cossio, X. F. Cui, H. L. 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, C. Dong, J. Dong, L. Y. Dong, M. Y. Dong, X. Dong, S. X. Du, Y. L. Fan, J. Fang, S. S. Fang, Y. Fang, R. Farinelli, L. Fava, F. Feldbauer, G. Felici, C. Q. Feng, J. H. Feng, M. Fritsch, C. D. Fu, Y. Gao, Y. G. Gao, I. Garzia, P. T. Ge, C. Geng, E. M. Gersabeck, A. Gilman, K. Goetzen, L. Gong, W. X. Gong, W. Gradl, M. Greco, L. M. Gu, M. H. Gu, S. Gu, Y. T. 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. L. He, F. H. Heinsius, C. H. Heinz, T. Held, 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, L. Q. Huang, X. T. Huang, Y. P. Huang, Z. Huang, T. Hussain, N. Hüsken, W. I. Andersson, 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, 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, D. M. Li, F. Li, G. Li, H. Li, H. B. Li, H. J. Li, J. L. Li, J. Q. Li, J. S. Li, K. Li, L. K. Li, L. Li, P. R. Li, S. Y. Li, W. D. Li, W. G. Li, X. H. Li, X. L. Li, X. Li, Z. Y. Li, H. Liang, Y. F. Liang, Y. T. Liang, G. R. Liao, L. Z. Liao, J. Libby, C. X. Lin, B. J. Liu, C. X. Liu, D. Liu, F. H. Liu, F. Liu, H. B. Liu, H. M. Liu, H. Liu, J. B. Liu, J. L. Liu, J. Y. Liu, K. Liu, K. Y. Liu, L. Liu, M. H. Liu, P. L. Liu, Q. Liu, S. B. Liu, S. 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, C. L. Luo, M. X. Luo, P. W. Luo, T. Luo, X. L. Luo, X. R. 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, 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, T. J. Min, R. E. Mitchell, X. H. Mo, Y. J. Mo, N. Y. 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, P. Patteri, M. Pelizaeus, H. P. Peng, K. Peters, J. Pettersson, J. L. Ping, R. G. Ping, R. Poling, V. Prasad, H. Qi, H. R. Qi, K. H. Qi, M. Qi, T. Y. Qi, S. Qian, W. B. Qian, Z. Qian, C. F. Qiao, 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, A. Rivetti, V. Rodin, M. Rolo, G. Rong, C. Rosner, M. Rump, H. S. Sang, A. Sarantsev, Y. Schelhaas, C. Schnier, K. Schoenning, M. Scodeggio, D. C. Shan, W. Shan, X. Y. Shan, J. F. Shangguan, M. Shao, C. P. Shen, H. F. Shen, P. X. Shen, X. Y. Shen, H. C. Shi, R. S. Shi, X. Shi, X. D. Shi, J. J. Song, W. M. Song, Y. X. Song, S. Sosio, S. Spataro, K. X. Su, P. P. Su, F. F. Sui, 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. K. Sun, Y. Z. Sun, Z. T. Sun, Y. H. Tan, Y. X. Tan, C. J. Tang, G. Y. Tang, J. Tang, J. X. Teng, V. Thoren, W. H. Tian, Y. T. Tian, I. Uman, B. Wang, C. W. Wang, D. Y. Wang, H. J. Wang, H. P. Wang, K. Wang, L. L. Wang, M. Wang, M. Z. Wang, W. Wang, W. H. Wang, W. P. Wang, X. Wang, X. F. Wang, X. L. Wang, Y. Wang, Y. D. Wang, Y. F. Wang, Y. Q. Wang, Y. Y. Wang, Z. Wang, Z. Y. 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, Z. Wu, L. Xia, H. Xiao, S. Y. Xiao, Z. J. Xiao, X. H. Xie, Y. G. Xie, Y. H. Xie, T. Y. Xing, G. F. Xu, Q. J. Xu, W. Xu, X. P. Xu, Y. C. Xu, F. Yan, L. Yan, W. B. Yan, W. C. Yan, X. Yan, H. J. Yang, H. X. Yang, L. Yang, S. L. Yang, Y. X. Yang, Y. Yang, Z. 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, X. Q. Yuan, Y. Yuan, Z. Y. Yuan, C. X. Yue, A. A. Zafar, X. Z. Zeng, Y. Zeng, A. Q. Zhang, B. X. Zhang, G. Zhang, H. Zhang, H. H. Zhang, H. Y. Zhang, J. J. Zhang, J. L. Zhang, J. Q. Zhang, J. W. Zhang, J. Y. Zhang, J. Z. Zhang, J. Zhang, L. M. Zhang, L. Q. Zhang, L. Zhang, S. Zhang, S. F. Zhang, X. D. Zhang, X. Y. Zhang, Y. Zhang, Y. T. Zhang, Y. H. Zhang, Z. H. Zhang, Z. Y. Zhang, G. Zhao, J. Zhao, J. Y. Zhao, J. Z. Zhao, L. 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. Zheng, Y. H. Zheng, B. Zhong, C. Zhong, L. P. Zhou, Q. Zhou, X. Zhou, X. K. Zhou, X. R. Zhou, X. Y. Zhou, A. N. Zhu, J. Zhu, K. Zhu, K. J. Zhu, S. H. Zhu, T. J. Zhu, W. J. Zhu, X. Y. Zhu, Y. C. Zhu, Z. A. Zhu, B. S. Zou, J. H. Zou
Format: Article
Language:English
Published: SpringerOpen 2022-04-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP04(2022)058
_version_ 1827985409334837248
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. B. Ferroli
I. Balossino
Y. Ban
K. Begzsuren
N. Berger
M. Bertani
D. Bettoni
F. Bianchi
J. Bloms
A. Bortone
I. Boyko
R. A. Briere
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
J. F. Chang
W. L. Chang
G. Chelkov
D. Y. Chen
G. Chen
H. S. Chen
M. L. Chen
S. J. Chen
X. R. Chen
Y. B. Chen
Z. J. Chen
W. S. Cheng
G. Cibinetto
F. Cossio
X. F. Cui
H. L. 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
C. Dong
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
S. X. Du
Y. L. Fan
J. Fang
S. S. Fang
Y. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
M. Fritsch
C. D. Fu
Y. Gao
Y. Gao
Y. Gao
Y. G. Gao
I. Garzia
P. T. Ge
C. Geng
E. M. Gersabeck
A. Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
M. Greco
L. M. Gu
M. H. Gu
S. Gu
Y. T. 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. L. He
F. H. Heinsius
C. H. Heinz
T. Held
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
L. Q. Huang
X. T. Huang
Y. P. Huang
Z. Huang
T. Hussain
N. Hüsken
W. I. Andersson
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
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
C. Li
D. M. Li
F. Li
G. Li
H. Li
H. Li
H. B. Li
H. J. Li
J. L. Li
J. Q. Li
J. S. Li
K. Li
L. K. Li
L. Li
P. R. Li
S. Y. Li
W. D. Li
W. G. Li
X. H. Li
X. L. Li
X. Li
Z. Y. Li
H. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
L. Z. Liao
J. Libby
C. X. Lin
B. J. Liu
C. X. Liu
D. Liu
F. H. Liu
F. Liu
F. Liu
H. B. Liu
H. M. Liu
H. Liu
H. Liu
J. B. Liu
J. L. Liu
J. Y. Liu
K. Liu
K. Y. Liu
L. Liu
M. H. Liu
P. L. Liu
Q. Liu
Q. Liu
S. B. Liu
S. 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
C. L. Luo
M. X. Luo
P. W. Luo
T. Luo
X. L. Luo
X. R. 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
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
T. J. Min
R. E. Mitchell
X. H. Mo
Y. J. Mo
N. Y. 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
P. Patteri
M. Pelizaeus
H. P. Peng
K. Peters
J. Pettersson
J. L. Ping
R. G. Ping
R. Poling
V. Prasad
H. Qi
H. R. Qi
K. H. Qi
M. Qi
T. Y. Qi
S. Qian
W. B. Qian
Z. Qian
C. F. Qiao
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
A. Rivetti
V. Rodin
M. Rolo
G. Rong
C. Rosner
M. Rump
H. S. Sang
A. Sarantsev
Y. Schelhaas
C. Schnier
K. Schoenning
M. Scodeggio
D. C. Shan
W. Shan
X. Y. Shan
J. F. Shangguan
M. Shao
C. P. Shen
H. F. Shen
P. X. Shen
X. Y. Shen
H. C. Shi
R. S. Shi
X. Shi
X. D. Shi
J. J. Song
W. M. Song
Y. X. Song
S. Sosio
S. Spataro
K. X. Su
P. P. Su
F. F. Sui
G. X. Sun
H. K. Sun
J. F. Sun
L. Sun
S. S. Sun
T. Sun
W. Y. Sun
W. Y. Sun
X. Sun
Y. J. Sun
Y. K. Sun
Y. Z. Sun
Z. T. Sun
Y. H. Tan
Y. X. Tan
C. J. Tang
G. Y. Tang
J. Tang
J. X. Teng
V. Thoren
W. H. Tian
Y. T. Tian
I. Uman
B. Wang
C. W. Wang
D. Y. Wang
H. J. Wang
H. P. Wang
K. Wang
L. L. Wang
M. Wang
M. Z. Wang
M. Wang
W. Wang
W. H. Wang
W. P. Wang
X. Wang
X. F. Wang
X. L. Wang
Y. Wang
Y. Wang
Y. D. Wang
Y. F. Wang
Y. Q. Wang
Y. Y. Wang
Z. Wang
Z. Y. Wang
Z. Wang
Z. 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
Z. Wu
L. Xia
H. Xiao
S. Y. Xiao
Z. J. Xiao
X. H. Xie
Y. G. Xie
Y. H. Xie
T. Y. Xing
G. F. Xu
Q. J. Xu
W. Xu
X. P. Xu
Y. C. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
X. Yan
H. J. Yang
H. X. Yang
L. Yang
S. L. Yang
Y. X. Yang
Y. Yang
Z. 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
X. Q. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
A. A. Zafar
X. Z. Zeng
Y. Zeng
A. Q. Zhang
B. X. Zhang
G. Zhang
H. Zhang
H. H. Zhang
H. H. Zhang
H. Y. Zhang
J. J. Zhang
J. L. Zhang
J. Q. Zhang
J. W. Zhang
J. Y. Zhang
J. Z. Zhang
J. Zhang
J. Zhang
L. M. Zhang
L. Q. Zhang
L. Zhang
S. Zhang
S. F. Zhang
S. Zhang
X. D. Zhang
X. Y. Zhang
Y. Zhang
Y. T. Zhang
Y. H. Zhang
Y. Zhang
Y. Zhang
Z. H. Zhang
Z. Y. Zhang
G. Zhao
J. Zhao
J. Y. Zhao
J. Z. Zhao
L. Zhao
L. 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. Zheng
Y. H. Zheng
B. Zhong
C. Zhong
L. P. Zhou
Q. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
S. H. Zhu
T. J. Zhu
W. J. Zhu
W. J. Zhu
X. Y. 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. B. Ferroli
I. Balossino
Y. Ban
K. Begzsuren
N. Berger
M. Bertani
D. Bettoni
F. Bianchi
J. Bloms
A. Bortone
I. Boyko
R. A. Briere
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
J. F. Chang
W. L. Chang
G. Chelkov
D. Y. Chen
G. Chen
H. S. Chen
M. L. Chen
S. J. Chen
X. R. Chen
Y. B. Chen
Z. J. Chen
W. S. Cheng
G. Cibinetto
F. Cossio
X. F. Cui
H. L. 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
C. Dong
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
S. X. Du
Y. L. Fan
J. Fang
S. S. Fang
Y. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
M. Fritsch
C. D. Fu
Y. Gao
Y. Gao
Y. Gao
Y. G. Gao
I. Garzia
P. T. Ge
C. Geng
E. M. Gersabeck
A. Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
M. Greco
L. M. Gu
M. H. Gu
S. Gu
Y. T. 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. L. He
F. H. Heinsius
C. H. Heinz
T. Held
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
L. Q. Huang
X. T. Huang
Y. P. Huang
Z. Huang
T. Hussain
N. Hüsken
W. I. Andersson
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
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
C. Li
D. M. Li
F. Li
G. Li
H. Li
H. Li
H. B. Li
H. J. Li
J. L. Li
J. Q. Li
J. S. Li
K. Li
L. K. Li
L. Li
P. R. Li
S. Y. Li
W. D. Li
W. G. Li
X. H. Li
X. L. Li
X. Li
Z. Y. Li
H. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
L. Z. Liao
J. Libby
C. X. Lin
B. J. Liu
C. X. Liu
D. Liu
F. H. Liu
F. Liu
F. Liu
H. B. Liu
H. M. Liu
H. Liu
H. Liu
J. B. Liu
J. L. Liu
J. Y. Liu
K. Liu
K. Y. Liu
L. Liu
M. H. Liu
P. L. Liu
Q. Liu
Q. Liu
S. B. Liu
S. 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
C. L. Luo
M. X. Luo
P. W. Luo
T. Luo
X. L. Luo
X. R. 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
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
T. J. Min
R. E. Mitchell
X. H. Mo
Y. J. Mo
N. Y. 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
P. Patteri
M. Pelizaeus
H. P. Peng
K. Peters
J. Pettersson
J. L. Ping
R. G. Ping
R. Poling
V. Prasad
H. Qi
H. R. Qi
K. H. Qi
M. Qi
T. Y. Qi
S. Qian
W. B. Qian
Z. Qian
C. F. Qiao
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
A. Rivetti
V. Rodin
M. Rolo
G. Rong
C. Rosner
M. Rump
H. S. Sang
A. Sarantsev
Y. Schelhaas
C. Schnier
K. Schoenning
M. Scodeggio
D. C. Shan
W. Shan
X. Y. Shan
J. F. Shangguan
M. Shao
C. P. Shen
H. F. Shen
P. X. Shen
X. Y. Shen
H. C. Shi
R. S. Shi
X. Shi
X. D. Shi
J. J. Song
W. M. Song
Y. X. Song
S. Sosio
S. Spataro
K. X. Su
P. P. Su
F. F. Sui
G. X. Sun
H. K. Sun
J. F. Sun
L. Sun
S. S. Sun
T. Sun
W. Y. Sun
W. Y. Sun
X. Sun
Y. J. Sun
Y. K. Sun
Y. Z. Sun
Z. T. Sun
Y. H. Tan
Y. X. Tan
C. J. Tang
G. Y. Tang
J. Tang
J. X. Teng
V. Thoren
W. H. Tian
Y. T. Tian
I. Uman
B. Wang
C. W. Wang
D. Y. Wang
H. J. Wang
H. P. Wang
K. Wang
L. L. Wang
M. Wang
M. Z. Wang
M. Wang
W. Wang
W. H. Wang
W. P. Wang
X. Wang
X. F. Wang
X. L. Wang
Y. Wang
Y. Wang
Y. D. Wang
Y. F. Wang
Y. Q. Wang
Y. Y. Wang
Z. Wang
Z. Y. Wang
Z. Wang
Z. 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
Z. Wu
L. Xia
H. Xiao
S. Y. Xiao
Z. J. Xiao
X. H. Xie
Y. G. Xie
Y. H. Xie
T. Y. Xing
G. F. Xu
Q. J. Xu
W. Xu
X. P. Xu
Y. C. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
X. Yan
H. J. Yang
H. X. Yang
L. Yang
S. L. Yang
Y. X. Yang
Y. Yang
Z. 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
X. Q. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
A. A. Zafar
X. Z. Zeng
Y. Zeng
A. Q. Zhang
B. X. Zhang
G. Zhang
H. Zhang
H. H. Zhang
H. H. Zhang
H. Y. Zhang
J. J. Zhang
J. L. Zhang
J. Q. Zhang
J. W. Zhang
J. Y. Zhang
J. Z. Zhang
J. Zhang
J. Zhang
L. M. Zhang
L. Q. Zhang
L. Zhang
S. Zhang
S. F. Zhang
S. Zhang
X. D. Zhang
X. Y. Zhang
Y. Zhang
Y. T. Zhang
Y. H. Zhang
Y. Zhang
Y. Zhang
Z. H. Zhang
Z. Y. Zhang
G. Zhao
J. Zhao
J. Y. Zhao
J. Z. Zhao
L. Zhao
L. 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. Zheng
Y. H. Zheng
B. Zhong
C. Zhong
L. P. Zhou
Q. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
S. H. Zhu
T. J. Zhu
W. J. Zhu
W. J. Zhu
X. Y. Zhu
Y. C. Zhu
Z. A. Zhu
B. S. Zou
J. H. Zou
author_sort The BESIII collaboration
collection DOAJ
description Abstract Using data collected with the BESIII detector in e + e − collisions at center-of-mass energies between 4.178 and 4.226 GeV and corresponding to 6.32 fb −1 of integrated luminosity, we report the amplitude analysis and branching-fraction measurement of the D s + $$ {D}_s^{+} $$ → π + π 0 η′ decay. We find that the dominant intermediate process is D s + $$ {D}_s^{+} $$ → ρ + η′ and the significances of other resonant and nonresonant processes are all less than 3σ. The upper limits on the branching fractions of S-wave and P-wave nonresonant components are set to 0.10% and 0.74% at the 90% confidence level, respectively. In addition, the branching fraction of the D s + $$ {D}_s^{+} $$ → π + π 0 η′ decay is measured to be (6.15 ± 0.25(stat.) ± 0.18(syst.))%, which receives significant contribution only from D s + $$ {D}_s^{+} $$ → ρ + η′ according to the amplitude analysis.
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institution Directory Open Access Journal
issn 1029-8479
language English
last_indexed 2024-04-09T23:14:26Z
publishDate 2022-04-01
publisher SpringerOpen
record_format Article
series Journal of High Energy Physics
spelling doaj.art-b6ea456d17db495d94279e7e0a5237942023-03-22T10:10:06ZengSpringerOpenJournal of High Energy Physics1029-84792022-04-012022412610.1007/JHEP04(2022)058Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′The BESIII collaborationM. Ablikim0M. N. Achasov1P. Adlarson2S. Ahmed3M. Albrecht4R. Aliberti5A. Amoroso6M. R. An7Q. An8X. H. Bai9Y. Bai10O. Bakina11R. B. Ferroli12I. Balossino13Y. Ban14K. Begzsuren15N. Berger16M. Bertani17D. Bettoni18F. Bianchi19J. Bloms20A. Bortone21I. Boyko22R. A. Briere23H. Cai24X. Cai25A. Calcaterra26G. F. Cao27N. Cao28S. A. Cetin29J. F. Chang30W. L. Chang31G. Chelkov32D. Y. Chen33G. Chen34H. S. Chen35M. L. Chen36S. J. Chen37X. R. Chen38Y. B. Chen39Z. J. Chen40W. S. Cheng41G. Cibinetto42F. Cossio43X. F. Cui44H. L. Dai45X. C. Dai46A. Dbeyssi47R. E. de Boer48D. Dedovich49Z. Y. Deng50A. Denig51I. Denysenko52M. Destefanis53F. De Mori54Y. Ding55C. Dong56J. Dong57L. Y. Dong58M. Y. Dong59X. Dong60S. X. Du61Y. L. Fan62J. Fang63S. S. Fang64Y. Fang65R. Farinelli66L. Fava67F. Feldbauer68G. Felici69C. Q. Feng70J. H. Feng71M. Fritsch72C. D. Fu73Y. Gao74Y. Gao75Y. Gao76Y. G. Gao77I. Garzia78P. T. Ge79C. Geng80E. M. Gersabeck81A. Gilman82K. Goetzen83L. Gong84W. X. Gong85W. Gradl86M. Greco87L. M. Gu88M. H. Gu89S. Gu90Y. T. Gu91C. Y. Guan92A. Q. Guo93L. B. Guo94R. P. Guo95Y. P. Guo96A. Guskov97T. T. Han98W. Y. Han99X. Q. Hao100F. A. Harris101K. L. He102F. H. Heinsius103C. H. Heinz104T. Held105Y. K. Heng106C. Herold107M. Himmelreich108T. Holtmann109G. Y. Hou110Y. R. Hou111Z. L. Hou112H. M. Hu113J. F. Hu114T. Hu115Y. Hu116G. S. Huang117L. Q. Huang118X. T. Huang119Y. P. Huang120Z. Huang121T. Hussain122N. Hüsken123W. I. Andersson124W. Imoehl125M. Irshad126S. Jaeger127S. Janchiv128Q. Ji129Q. P. Ji130X. B. Ji131X. L. Ji132Y. Y. Ji133H. B. Jiang134X. S. Jiang135J. B. Jiao136Z. Jiao137S. Jin138Y. Jin139M. Q. Jing140T. Johansson141N. Kalantar-Nayestanaki142X. S. Kang143R. Kappert144M. Kavatsyuk145B. C. Ke146I. K. Keshk147A. Khoukaz148P. Kiese149R. Kiuchi150R. Kliemt151L. Koch152O. B. Kolcu153B. Kopf154M. Kuemmel155M. Kuessner156A. Kupsc157M. G. Kurth158W. Kühn159J. J. Lane160J. S. Lange161P. Larin162A. Lavania163L. Lavezzi164Z. H. Lei165H. Leithoff166M. Lellmann167T. Lenz168C. Li169C. H. Li170C. Li171D. M. Li172F. Li173G. Li174H. Li175H. Li176H. B. Li177H. J. Li178J. L. Li179J. Q. Li180J. S. Li181K. Li182L. K. Li183L. Li184P. R. Li185S. Y. Li186W. D. Li187W. G. Li188X. H. Li189X. L. Li190X. Li191Z. Y. Li192H. Liang193H. Liang194H. Liang195Y. F. Liang196Y. T. Liang197G. R. Liao198L. Z. Liao199J. Libby200C. X. Lin201B. J. Liu202C. X. Liu203D. Liu204F. H. Liu205F. Liu206F. Liu207H. B. Liu208H. M. Liu209H. Liu210H. Liu211J. B. Liu212J. L. Liu213J. Y. Liu214K. Liu215K. Y. Liu216L. Liu217M. H. Liu218P. L. Liu219Q. Liu220Q. Liu221S. B. Liu222S. Liu223T. Liu224W. M. Liu225X. Liu226Y. Liu227Y. B. Liu228Z. A. Liu229Z. Q. Liu230X. C. Lou231F. X. Lu232H. J. Lu233J. D. Lu234J. G. Lu235X. L. Lu236Y. Lu237Y. P. Lu238C. L. Luo239M. X. Luo240P. W. Luo241T. Luo242X. L. Luo243X. R. Lyu244F. C. Ma245H. L. Ma246L. L. Ma247M. M. Ma248Q. M. Ma249R. Q. Ma250R. T. Ma251X. X. Ma252X. Y. Ma253F. E. Maas254M. Maggiora255S. Maldaner256S. Malde257Q. A. Malik258A. Mangoni259Y. J. Mao260Z. P. Mao261S. Marcello262Z. X. Meng263J. G. Messchendorp264G. Mezzadri265T. J. Min266R. E. Mitchell267X. H. Mo268Y. J. Mo269N. Y. Muchnoi270H. Muramatsu271S. Nakhoul272Y. Nefedov273F. Nerling274I. B. Nikolaev275Z. Ning276S. Nisar277S. L. Olsen278Q. Ouyang279S. Pacetti280X. Pan281Y. Pan282A. Pathak283A. Pathak284P. Patteri285M. Pelizaeus286H. P. Peng287K. Peters288J. Pettersson289J. L. Ping290R. G. Ping291R. Poling292V. Prasad293H. Qi294H. R. Qi295K. H. Qi296M. Qi297T. Y. Qi298S. Qian299W. B. Qian300Z. Qian301C. F. Qiao302L. Q. Qin303X. P. Qin304X. S. Qin305Z. H. Qin306J. F. Qiu307S. Q. Qu308K. H. Rashid309K. Ravindran310C. F. Redmer311A. Rivetti312V. Rodin313M. Rolo314G. Rong315C. Rosner316M. Rump317H. S. Sang318A. Sarantsev319Y. Schelhaas320C. Schnier321K. Schoenning322M. Scodeggio323D. C. Shan324W. Shan325X. Y. Shan326J. F. Shangguan327M. Shao328C. P. Shen329H. F. Shen330P. X. Shen331X. Y. Shen332H. C. Shi333R. S. Shi334X. Shi335X. D. Shi336J. J. Song337W. M. Song338Y. X. Song339S. Sosio340S. Spataro341K. X. Su342P. P. Su343F. F. Sui344G. X. Sun345H. K. Sun346J. F. Sun347L. Sun348S. S. Sun349T. Sun350W. Y. Sun351W. Y. Sun352X. Sun353Y. J. Sun354Y. K. Sun355Y. Z. Sun356Z. T. Sun357Y. H. Tan358Y. X. Tan359C. J. Tang360G. Y. Tang361J. Tang362J. X. Teng363V. Thoren364W. H. Tian365Y. T. Tian366I. Uman367B. Wang368C. W. Wang369D. Y. Wang370H. J. Wang371H. P. Wang372K. Wang373L. L. Wang374M. Wang375M. Z. Wang376M. Wang377W. Wang378W. H. Wang379W. P. Wang380X. Wang381X. F. Wang382X. L. Wang383Y. Wang384Y. Wang385Y. D. Wang386Y. F. Wang387Y. Q. Wang388Y. Y. Wang389Z. Wang390Z. Y. Wang391Z. Wang392Z. Wang393D. H. Wei394F. Weidner395S. P. Wen396D. J. White397U. Wiedner398G. Wilkinson399M. Wolke400L. Wollenberg401J. F. Wu402L. H. Wu403L. J. Wu404X. Wu405Z. Wu406L. Xia407H. Xiao408S. Y. Xiao409Z. J. Xiao410X. H. Xie411Y. G. Xie412Y. H. Xie413T. Y. Xing414G. F. Xu415Q. J. Xu416W. Xu417X. P. Xu418Y. C. Xu419F. Yan420L. Yan421W. B. Yan422W. C. Yan423X. Yan424H. J. Yang425H. X. Yang426L. Yang427S. L. Yang428Y. X. Yang429Y. Yang430Z. Yang431M. Ye432M. H. Ye433J. H. Yin434Z. Y. You435B. X. Yu436C. X. Yu437G. Yu438J. S. Yu439T. Yu440C. Z. Yuan441L. Yuan442X. Q. Yuan443Y. Yuan444Z. Y. Yuan445C. X. Yue446A. A. Zafar447X. Z. Zeng448Y. Zeng449A. Q. Zhang450B. X. Zhang451G. Zhang452H. Zhang453H. H. Zhang454H. H. Zhang455H. Y. Zhang456J. J. Zhang457J. L. Zhang458J. Q. Zhang459J. W. Zhang460J. Y. Zhang461J. Z. Zhang462J. Zhang463J. Zhang464L. M. Zhang465L. Q. Zhang466L. Zhang467S. Zhang468S. F. Zhang469S. Zhang470X. D. Zhang471X. Y. Zhang472Y. Zhang473Y. T. Zhang474Y. H. Zhang475Y. Zhang476Y. Zhang477Z. H. Zhang478Z. Y. Zhang479G. Zhao480J. Zhao481J. Y. Zhao482J. Z. Zhao483L. Zhao484L. Zhao485M. G. Zhao486Q. Zhao487S. J. Zhao488Y. B. Zhao489Y. X. Zhao490Z. G. Zhao491A. Zhemchugov492B. Zheng493J. P. Zheng494Y. Zheng495Y. H. Zheng496B. Zhong497C. Zhong498L. P. Zhou499Q. Zhou500X. Zhou501X. K. Zhou502X. R. Zhou503X. Y. Zhou504A. N. Zhu505J. Zhu506K. Zhu507K. J. Zhu508S. H. Zhu509T. J. Zhu510W. J. Zhu511W. J. Zhu512X. Y. Zhu513Y. C. Zhu514Z. A. Zhu515B. S. Zou516J. H. Zou517Institute 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 UniversityState Key Laboratory of Particle Detection and ElectronicsUniversity of JinanSoutheast UniversityJoint Institute for Nuclear ResearchINFN Laboratori Nazionali di FrascatiINFN Sezione di FerraraPeking UniversityInstitute 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 UniversityWuhan UniversityInstitute of High Energy PhysicsINFN Laboratori Nazionali di FrascatiInstitute of High Energy PhysicsInstitute of High Energy PhysicsTurkish Accelerator Center Particle Factory Group, Istanbul Bilgi University, HEP Res. Cent.Institute of High Energy PhysicsInstitute of High Energy PhysicsJoint Institute for Nuclear ResearchCentral China Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsNanjing UniversityInstitute of Modern PhysicsInstitute of High Energy PhysicsHunan UniversityINFNINFN Sezione di FerraraINFNNankai UniversityInstitute of High Energy PhysicsInstitute 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 UniversityNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsWuhan UniversityZhengzhou UniversityWuhan UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsINFN Sezione di FerraraUniversity of Eastern PiedmontBochum Ruhr-UniversityINFN Laboratori Nazionali di FrascatiState Key Laboratory of Particle Detection and ElectronicsSun Yat-Sen UniversityBochum Ruhr-UniversityInstitute of High Energy PhysicsPeking UniversityUniversity of South ChinaState Key Laboratory of Particle Detection and ElectronicsCentral China Normal UniversityINFN 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 TurinNanjing UniversityInstitute of High Energy PhysicsBeihang UniversityGuangxi UniversityInstitute of High Energy PhysicsIndiana UniversityNanjing Normal UniversityShandong Normal UniversityFudan UniversityJoint Institute for Nuclear ResearchShandong UniversityLiaoning Normal UniversityHenan Normal UniversityUniversity of HawaiiInstitute of High Energy PhysicsBochum Ruhr-UniversityJohannes Gutenberg University of MainzBochum Ruhr-UniversityInstitute 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 PhysicsState Key Laboratory of Particle Detection and ElectronicsUniversity of South ChinaShandong UniversityInstitute of High Energy PhysicsPeking UniversityUniversity of the PunjabIndiana UniversityUppsala UniversityIndiana UniversityState Key Laboratory of Particle Detection and ElectronicsBochum Ruhr-UniversityInstitute of Physics and TechnologyInstitute of High Energy PhysicsHenan Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsShandong UniversityShandong UniversityInstitute of High Energy PhysicsShandong UniversityHuangshan CollegeNanjing UniversityUniversity of JinanInstitute of High Energy PhysicsUppsala UniversityUniversity of GroningenLiaoning UniversityUniversity of GroningenUniversity of GroningenInstitute of High Energy PhysicsBochum 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, Istanbul Bilgi University, HEP Res. Cent.Bochum Ruhr-UniversityBochum Ruhr-UniversityBochum Ruhr-UniversityUppsala UniversityInstitute 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 TurinState Key Laboratory of Particle Detection and ElectronicsJohannes Gutenberg University of MainzJohannes Gutenberg University of MainzJohannes Gutenberg University of MainzQufu Normal UniversityLiaoning Normal UniversityState Key Laboratory of Particle Detection and ElectronicsZhengzhou UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsShanxi Normal UniversityInstitute of High Energy PhysicsHenan Normal UniversityShandong UniversityBochum Ruhr-UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsBeijing Institute of Petrochemical TechnologyLanzhou UniversityTsinghua UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsShandong UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityState Key Laboratory of Particle Detection and ElectronicsInstitute of High Energy PhysicsJilin UniversitySichuan UniversityInstitute of Modern PhysicsGuangxi Normal UniversityInstitute of High Energy PhysicsIndian Institute of Technology MadrasSun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsShanxi UniversityInstitute of High Energy PhysicsCentral China Normal UniversityGuangxi UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan University of Science and TechnologyState Key Laboratory of Particle Detection and ElectronicsUniversity of South ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsLiaoning UniversityState Key Laboratory of Particle Detection and ElectronicsFudan UniversityInstitute of High Energy PhysicsWuhan UniversityUniversity of Chinese Academy of SciencesState Key Laboratory of Particle Detection and ElectronicsSoochow UniversityInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsLanzhou 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 PhysicsNanjing Normal UniversityZhejiang UniversitySun Yat-Sen UniversityFudan UniversityInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesLiaoning 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 PhysicsHelmholtz 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 FerraraNanjing UniversityIndiana UniversityInstitute of High Energy PhysicsCentral China Normal UniversityG.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. Budker Institute of Nuclear Physics SB RAS (BINP)Institute of High Energy PhysicsCOMSATS University Islamabad, Lahore CampusUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsINFN Sezione di PerugiaFudan UniversityUniversity of ManchesterInstitute of High Energy PhysicsJilin UniversityINFN Laboratori Nazionali di FrascatiBochum Ruhr-UniversityState Key Laboratory of Particle Detection and ElectronicsGSI Helmholtzcentre for Heavy Ion Research GmbHUppsala UniversityNanjing Normal UniversityInstitute of High Energy PhysicsUniversity of MinnesotaState Key Laboratory of Particle Detection and ElectronicsState Key Laboratory of Particle Detection and ElectronicsTsinghua UniversityInstitute of Modern PhysicsNanjing UniversityFudan UniversityInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesSun Yat-Sen UniversityUniversity of Chinese Academy of SciencesGuangxi Normal UniversityFudan UniversityShandong UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsNankai UniversityUniversity of the PunjabIndian Institute of Technology MadrasJohannes Gutenberg University of MainzINFNUniversity 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 FerraraSoochow UniversityHunan Normal UniversityState Key Laboratory of Particle Detection and ElectronicsSoochow UniversityState Key Laboratory of Particle Detection and ElectronicsFudan UniversityInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsShandong UniversityInstitute of High Energy PhysicsPeking UniversityUniversity of TurinUniversity of TurinWuhan UniversitySoochow UniversityShandong UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityWuhan UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsNanjing Normal UniversityJilin UniversityHunan UniversityState Key Laboratory of Particle Detection and ElectronicsState Key Laboratory of Particle Detection and ElectronicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsWuhan UniversityState Key Laboratory of Particle Detection and ElectronicsSichuan UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityState Key Laboratory of Particle Detection and ElectronicsUppsala UniversityShanxi Normal UniversityInstitute of Modern PhysicsNear East UniversityInstitute of High Energy PhysicsNanjing UniversityPeking UniversityLanzhou UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsShandong UniversityPeking UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityWuhan UniversityState Key Laboratory of Particle Detection and ElectronicsPeking UniversityLanzhou UniversityFudan UniversitySun Yat-Sen UniversityState Key Laboratory of Particle Detection and ElectronicsNorth China Electric Power UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsLanzhou 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 UniversityInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsFudan UniversityInstitute of High Energy PhysicsNanjing Normal UniversityPeking UniversityInstitute of High Energy PhysicsCentral China Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHangzhou Normal UniversityInstitute of High Energy PhysicsSoochow UniversityUniversity of Chinese Academy of SciencesFudan UniversityFudan UniversityState Key Laboratory of Particle Detection and ElectronicsZhengzhou UniversitySoochow UniversityShanghai Jiao Tong UniversityInstitute of High Energy PhysicsShanxi Normal UniversityUniversity of Chinese Academy of SciencesGuangxi Normal UniversityInstitute 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 UniversityPeking UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityLiaoning Normal UniversityUniversity of the PunjabCentral China Normal UniversityHunan UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityUniversity of Science and Technology of ChinaJilin UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsShanxi Normal UniversityXinyang 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 UniversitySun Yat-Sen UniversityNanjing UniversityHunan UniversityNorth China Electric Power UniversityShandong UniversityUniversity of OxfordZhengzhou UniversityInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsInstitute of High Energy PhysicsCentral China Normal UniversityWuhan UniversityInstitute of High Energy PhysicsLiaoning Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsState Key Laboratory of Particle Detection and ElectronicsInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsZhengzhou UniversityInstitute of High Energy PhysicsInstitute of Modern PhysicsState Key Laboratory of Particle Detection and ElectronicsJoint Institute for Nuclear ResearchUniversity of South ChinaInstitute of High Energy PhysicsPeking UniversityUniversity of Chinese Academy of SciencesNanjing Normal UniversityUniversity of South ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsWuhan UniversityUniversity of Chinese Academy of SciencesState Key Laboratory of Particle Detection and ElectronicsLiaoning Normal UniversityInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology LiaoningXinyang Normal UniversityFudan UniversityNankai UniversityHenan Normal UniversityState Key Laboratory of Particle Detection and ElectronicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsAbstract Using data collected with the BESIII detector in e + e − collisions at center-of-mass energies between 4.178 and 4.226 GeV and corresponding to 6.32 fb −1 of integrated luminosity, we report the amplitude analysis and branching-fraction measurement of the D s + $$ {D}_s^{+} $$ → π + π 0 η′ decay. We find that the dominant intermediate process is D s + $$ {D}_s^{+} $$ → ρ + η′ and the significances of other resonant and nonresonant processes are all less than 3σ. The upper limits on the branching fractions of S-wave and P-wave nonresonant components are set to 0.10% and 0.74% at the 90% confidence level, respectively. In addition, the branching fraction of the D s + $$ {D}_s^{+} $$ → π + π 0 η′ decay is measured to be (6.15 ± 0.25(stat.) ± 0.18(syst.))%, which receives significant contribution only from D s + $$ {D}_s^{+} $$ → ρ + η′ according to the amplitude analysis.https://doi.org/10.1007/JHEP04(2022)058Branching fractionCharm Physicse +-e − ExperimentsParticle and Resonance 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. B. Ferroli
I. Balossino
Y. Ban
K. Begzsuren
N. Berger
M. Bertani
D. Bettoni
F. Bianchi
J. Bloms
A. Bortone
I. Boyko
R. A. Briere
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
J. F. Chang
W. L. Chang
G. Chelkov
D. Y. Chen
G. Chen
H. S. Chen
M. L. Chen
S. J. Chen
X. R. Chen
Y. B. Chen
Z. J. Chen
W. S. Cheng
G. Cibinetto
F. Cossio
X. F. Cui
H. L. 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
C. Dong
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
S. X. Du
Y. L. Fan
J. Fang
S. S. Fang
Y. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
M. Fritsch
C. D. Fu
Y. Gao
Y. Gao
Y. Gao
Y. G. Gao
I. Garzia
P. T. Ge
C. Geng
E. M. Gersabeck
A. Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
M. Greco
L. M. Gu
M. H. Gu
S. Gu
Y. T. 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. L. He
F. H. Heinsius
C. H. Heinz
T. Held
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
L. Q. Huang
X. T. Huang
Y. P. Huang
Z. Huang
T. Hussain
N. Hüsken
W. I. Andersson
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
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
C. Li
D. M. Li
F. Li
G. Li
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G. R. Liao
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H. M. Liu
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M. H. Liu
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X. C. Lou
F. X. Lu
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C. L. Luo
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F. C. Ma
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R. T. Ma
X. X. Ma
X. 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
T. J. Min
R. E. Mitchell
X. H. Mo
Y. J. Mo
N. Y. 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
P. Patteri
M. Pelizaeus
H. P. Peng
K. Peters
J. Pettersson
J. L. Ping
R. G. Ping
R. Poling
V. Prasad
H. Qi
H. R. Qi
K. H. Qi
M. Qi
T. Y. Qi
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C. F. Qiao
L. Q. Qin
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S. Q. Qu
K. H. Rashid
K. Ravindran
C. F. Redmer
A. Rivetti
V. Rodin
M. Rolo
G. Rong
C. Rosner
M. Rump
H. S. Sang
A. Sarantsev
Y. Schelhaas
C. Schnier
K. Schoenning
M. Scodeggio
D. C. Shan
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Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′
Journal of High Energy Physics
Branching fraction
Charm Physics
e +-e − Experiments
Particle and Resonance Production
title Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′
title_full Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′
title_fullStr Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′
title_full_unstemmed Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′
title_short Amplitude analysis and branching-fraction measurement of D s + $$ {\mathrm{D}}_{\mathrm{s}}^{+} $$ → π + π 0 η′
title_sort amplitude analysis and branching fraction measurement of d s mathrm d mathrm s π π 0 η
topic Branching fraction
Charm Physics
e +-e − Experiments
Particle and Resonance Production
url https://doi.org/10.1007/JHEP04(2022)058
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AT yzhang amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT yzhang amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT jyzhao amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT jzzhao amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT zgzhao amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT yhzheng amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT czhong amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT xzhou amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT jzhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT kzhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
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AT wjzhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT wjzhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT xyzhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT yczhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT zazhu amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT bszou amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē
AT jhzou amplitudeanalysisandbranchingfractionmeasurementofdsmathrmdmathrmspp0ē