First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays

Abstract We present the first model-independent measurement of the CKM unitarity triangle angle ϕ 3 using B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays, where D indicates either a D 0 or D ¯ $$ \overline{D} $$ 0 meson. Measurements of the strong-phase difference of the D → K S 0 $$...

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Main Authors: The BELLE collaboration, P. K. Resmi, J. Libby, K. Trabelsi, I. Adachi, H. Aihara, S. Al Said, D. M. Asner, V. Aulchenko, T. Aushev, V. Babu, I. Badhrees, A. M. Bakich, C. Beleño, J. Bennett, V. Bhardwaj, B. Bhuyan, T. Bilka, J. Biswal, A. Bozek, M. Bračko, M. Campajola, D. Červenkov, A. Chen, B. G. Cheon, H. E. Cho, K. Cho, Y. Choi, S. Choudhury, D. Cinabro, S. Cunliffe, N. Dash, G. De Nardo, F. Di Capua, S. Di Carlo, Z. Doležal, T. V. Dong, S. Eidelman, D. Epifanov, J. E. Fast, T. Ferber, B. G. Fulsom, R. Garg, V. Gaur, N. Gabyshev, A. Garmash, A. Giri, P. Goldenzweig, B. Golob, Y. Guan, K. Hayasaka, H. Hayashii, W.-S. Hou, K. Huang, T. Iijima, K. Inami, G. Inguglia, A. Ishikawa, R. Itoh, M. Iwasaki, Y. Iwasaki, W. W. Jacobs, H. B. Jeon, Y. Jin, D. Joffe, A. B. Kaliyar, K. H. Kang, G. Karyan, T. Kawasaki, C. Kiesling, D. Y. Kim, K. T. Kim, S. H. Kim, K. Kinoshita, P. Kodyš, D. Kotchetkov, P. Krǐzan, R. Kroeger, P. Krokovny, T. Kuhr, R. Kumar, A. Kuzmin, Y.-J. Kwon, S. C. Lee, Y. B. Li, K. Lieret, D. Liventsev, P.-C. Lu, T. Luo, C. MacQueen, M. Masuda, T. Matsuda, D. Matvienko, M. Merola, K. Miyabayashi, R. Mizuk, G. B. Mohanty, H. K. Moon, T. Nakano, M. Nakao, K. J. Nath, M. Nayak, M. Niiyama, N. K. Nisar, S. Nishida, K. Nishimura, S. Ogawa, H. Ono, Y. Onuki, P. Pakhlov, G. Pakhlova, B. Pal, S. Pardi, H. Park, T. K. Pedlar, R. Pestotnik, L. E. Piilonen, E. Prencipe, M. T. Prim, M. Ritter, M. Röhrken, G. Russo, D. Sahoo, Y. Sakai, S. Sandilya, L. Santelj, T. Sanuki, V. Savinov, O. Schneider, G. Schnell, C. Schwanda, A. J. Schwartz, Y. Seino, K. Senyo, M. E. Sevior, V. Shebalin, C. P. Shen, J.-G. Shiu, B. Shwartz, E. Solovieva, M. Starič, Z. S. Stottler, J. F. Strube, T. Sumiyoshi, M. Takizawa, U. Tamponi, K. Tanida, F. Tenchini, M. Uchida, T. Uglov, S. Uno, Y. Usov, R. Van Tonder, G. Varner, A. Vinokurova, V. Vorobyev, A. Vossen, B. Wang, C. H. Wang, M.-Z. Wang, X. L. Wang, S. Watanuki, E. Won, S. B. Yang, H. Ye, Z. P. Zhang, V. Zhilich, V. Zhukova
Format: Article
Language:English
Published: SpringerOpen 2019-10-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP10(2019)178
_version_ 1819206341021925376
author The BELLE collaboration
P. K. Resmi
J. Libby
K. Trabelsi
I. Adachi
H. Aihara
S. Al Said
D. M. Asner
V. Aulchenko
T. Aushev
V. Babu
I. Badhrees
A. M. Bakich
C. Beleño
J. Bennett
V. Bhardwaj
B. Bhuyan
T. Bilka
J. Biswal
A. Bozek
M. Bračko
M. Campajola
D. Červenkov
A. Chen
B. G. Cheon
H. E. Cho
K. Cho
Y. Choi
S. Choudhury
D. Cinabro
S. Cunliffe
N. Dash
G. De Nardo
F. Di Capua
S. Di Carlo
Z. Doležal
T. V. Dong
S. Eidelman
D. Epifanov
J. E. Fast
T. Ferber
B. G. Fulsom
R. Garg
V. Gaur
N. Gabyshev
A. Garmash
A. Giri
P. Goldenzweig
B. Golob
Y. Guan
K. Hayasaka
H. Hayashii
W.-S. Hou
K. Huang
T. Iijima
K. Inami
G. Inguglia
A. Ishikawa
R. Itoh
M. Iwasaki
Y. Iwasaki
W. W. Jacobs
H. B. Jeon
Y. Jin
D. Joffe
A. B. Kaliyar
K. H. Kang
G. Karyan
T. Kawasaki
C. Kiesling
D. Y. Kim
K. T. Kim
S. H. Kim
K. Kinoshita
P. Kodyš
D. Kotchetkov
P. Krǐzan
R. Kroeger
P. Krokovny
T. Kuhr
R. Kumar
A. Kuzmin
Y.-J. Kwon
S. C. Lee
Y. B. Li
K. Lieret
D. Liventsev
P.-C. Lu
T. Luo
C. MacQueen
M. Masuda
T. Matsuda
D. Matvienko
M. Merola
K. Miyabayashi
R. Mizuk
G. B. Mohanty
H. K. Moon
T. Nakano
M. Nakao
K. J. Nath
M. Nayak
M. Niiyama
N. K. Nisar
S. Nishida
K. Nishimura
S. Ogawa
H. Ono
Y. Onuki
P. Pakhlov
G. Pakhlova
B. Pal
S. Pardi
H. Park
T. K. Pedlar
R. Pestotnik
L. E. Piilonen
E. Prencipe
M. T. Prim
M. Ritter
M. Röhrken
G. Russo
D. Sahoo
Y. Sakai
S. Sandilya
L. Santelj
T. Sanuki
V. Savinov
O. Schneider
G. Schnell
C. Schwanda
A. J. Schwartz
Y. Seino
K. Senyo
M. E. Sevior
V. Shebalin
C. P. Shen
J.-G. Shiu
B. Shwartz
E. Solovieva
M. Starič
Z. S. Stottler
J. F. Strube
T. Sumiyoshi
M. Takizawa
U. Tamponi
K. Tanida
F. Tenchini
M. Uchida
T. Uglov
S. Uno
Y. Usov
R. Van Tonder
G. Varner
A. Vinokurova
V. Vorobyev
A. Vossen
B. Wang
C. H. Wang
M.-Z. Wang
X. L. Wang
S. Watanuki
E. Won
S. B. Yang
H. Ye
Z. P. Zhang
V. Zhilich
V. Zhukova
author_facet The BELLE collaboration
P. K. Resmi
J. Libby
K. Trabelsi
I. Adachi
H. Aihara
S. Al Said
D. M. Asner
V. Aulchenko
T. Aushev
V. Babu
I. Badhrees
A. M. Bakich
C. Beleño
J. Bennett
V. Bhardwaj
B. Bhuyan
T. Bilka
J. Biswal
A. Bozek
M. Bračko
M. Campajola
D. Červenkov
A. Chen
B. G. Cheon
H. E. Cho
K. Cho
Y. Choi
S. Choudhury
D. Cinabro
S. Cunliffe
N. Dash
G. De Nardo
F. Di Capua
S. Di Carlo
Z. Doležal
T. V. Dong
S. Eidelman
D. Epifanov
J. E. Fast
T. Ferber
B. G. Fulsom
R. Garg
V. Gaur
N. Gabyshev
A. Garmash
A. Giri
P. Goldenzweig
B. Golob
Y. Guan
K. Hayasaka
H. Hayashii
W.-S. Hou
K. Huang
T. Iijima
K. Inami
G. Inguglia
A. Ishikawa
R. Itoh
M. Iwasaki
Y. Iwasaki
W. W. Jacobs
H. B. Jeon
Y. Jin
D. Joffe
A. B. Kaliyar
K. H. Kang
G. Karyan
T. Kawasaki
C. Kiesling
D. Y. Kim
K. T. Kim
S. H. Kim
K. Kinoshita
P. Kodyš
D. Kotchetkov
P. Krǐzan
R. Kroeger
P. Krokovny
T. Kuhr
R. Kumar
A. Kuzmin
Y.-J. Kwon
S. C. Lee
Y. B. Li
K. Lieret
D. Liventsev
P.-C. Lu
T. Luo
C. MacQueen
M. Masuda
T. Matsuda
D. Matvienko
M. Merola
K. Miyabayashi
R. Mizuk
G. B. Mohanty
H. K. Moon
T. Nakano
M. Nakao
K. J. Nath
M. Nayak
M. Niiyama
N. K. Nisar
S. Nishida
K. Nishimura
S. Ogawa
H. Ono
Y. Onuki
P. Pakhlov
G. Pakhlova
B. Pal
S. Pardi
H. Park
T. K. Pedlar
R. Pestotnik
L. E. Piilonen
E. Prencipe
M. T. Prim
M. Ritter
M. Röhrken
G. Russo
D. Sahoo
Y. Sakai
S. Sandilya
L. Santelj
T. Sanuki
V. Savinov
O. Schneider
G. Schnell
C. Schwanda
A. J. Schwartz
Y. Seino
K. Senyo
M. E. Sevior
V. Shebalin
C. P. Shen
J.-G. Shiu
B. Shwartz
E. Solovieva
M. Starič
Z. S. Stottler
J. F. Strube
T. Sumiyoshi
M. Takizawa
U. Tamponi
K. Tanida
F. Tenchini
M. Uchida
T. Uglov
S. Uno
Y. Usov
R. Van Tonder
G. Varner
A. Vinokurova
V. Vorobyev
A. Vossen
B. Wang
C. H. Wang
M.-Z. Wang
X. L. Wang
S. Watanuki
E. Won
S. B. Yang
H. Ye
Z. P. Zhang
V. Zhilich
V. Zhukova
author_sort The BELLE collaboration
collection DOAJ
description Abstract We present the first model-independent measurement of the CKM unitarity triangle angle ϕ 3 using B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays, where D indicates either a D 0 or D ¯ $$ \overline{D} $$ 0 meson. Measurements of the strong-phase difference of the D → K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0 amplitude obtained from CLEO-c data are used as input. This analysis is based on the full Belle data set of 772 × 106 B B ¯ $$ \overline{B} $$ events collected at the Υ(4S) resonance. We obtain ϕ 3 = ( 5.7 − 8.8 + 10.2 $$ {5.7}_{-8.8}^{+10.2} $$ ±3.5±5.7) ° and the suppressed amplitude ratio r B = 0.323±0.147±0.023±0.051. Here the first uncertainty is statistical, the second is the experimental systematic, and the third is due to the precision of the strong-phase parameters measured from CLEO-c data. The 95% confidence interval on ϕ 3 is (−29.7, 109.5) ° , which is consistent with the current world average.
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spelling doaj.art-eab558beec43478c97d8bc41c7c6a0222022-12-21T17:59:05ZengSpringerOpenJournal of High Energy Physics1029-84792019-10-0120191013110.1007/JHEP10(2019)178First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decaysThe BELLE collaborationP. K. Resmi0J. Libby1K. Trabelsi2I. Adachi3H. Aihara4S. Al Said5D. M. Asner6V. Aulchenko7T. Aushev8V. Babu9I. Badhrees10A. M. Bakich11C. Beleño12J. Bennett13V. Bhardwaj14B. Bhuyan15T. Bilka16J. Biswal17A. Bozek18M. Bračko19M. Campajola20D. Červenkov21A. Chen22B. G. Cheon23H. E. Cho24K. Cho25Y. Choi26S. Choudhury27D. Cinabro28S. Cunliffe29N. Dash30G. De Nardo31F. Di Capua32S. Di Carlo33Z. Doležal34T. V. Dong35S. Eidelman36D. Epifanov37J. E. Fast38T. Ferber39B. G. Fulsom40R. Garg41V. Gaur42N. Gabyshev43A. Garmash44A. Giri45P. Goldenzweig46B. Golob47Y. Guan48K. Hayasaka49H. Hayashii50W.-S. Hou51K. Huang52T. Iijima53K. Inami54G. Inguglia55A. Ishikawa56R. Itoh57M. Iwasaki58Y. Iwasaki59W. W. Jacobs60H. B. Jeon61Y. Jin62D. Joffe63A. B. Kaliyar64K. H. Kang65G. Karyan66T. Kawasaki67C. Kiesling68D. Y. Kim69K. T. Kim70S. H. Kim71K. Kinoshita72P. Kodyš73D. Kotchetkov74P. Krǐzan75R. Kroeger76P. Krokovny77T. Kuhr78R. Kumar79A. Kuzmin80Y.-J. Kwon81S. C. Lee82Y. B. Li83K. Lieret84D. Liventsev85P.-C. Lu86T. Luo87C. MacQueen88M. Masuda89T. Matsuda90D. Matvienko91M. Merola92K. Miyabayashi93R. Mizuk94G. B. Mohanty95H. K. Moon96T. Nakano97M. Nakao98K. J. Nath99M. Nayak100M. Niiyama101N. K. Nisar102S. Nishida103K. Nishimura104S. Ogawa105H. Ono106Y. Onuki107P. Pakhlov108G. Pakhlova109B. Pal110S. Pardi111H. Park112T. K. Pedlar113R. Pestotnik114L. E. Piilonen115E. Prencipe116M. T. Prim117M. Ritter118M. Röhrken119G. Russo120D. Sahoo121Y. Sakai122S. Sandilya123L. Santelj124T. Sanuki125V. Savinov126O. Schneider127G. Schnell128C. Schwanda129A. J. Schwartz130Y. Seino131K. Senyo132M. E. Sevior133V. Shebalin134C. P. Shen135J.-G. Shiu136B. Shwartz137E. Solovieva138M. Starič139Z. S. Stottler140J. F. Strube141T. Sumiyoshi142M. Takizawa143U. Tamponi144K. Tanida145F. Tenchini146M. Uchida147T. Uglov148S. Uno149Y. Usov150R. Van Tonder151G. Varner152A. Vinokurova153V. Vorobyev154A. Vossen155B. Wang156C. H. Wang157M.-Z. Wang158X. L. Wang159S. Watanuki160E. Won161S. B. Yang162H. Ye163Z. P. Zhang164V. Zhilich165V. Zhukova166Indian Institute of Technology MadrasIndian Institute of Technology MadrasLAL, Univ. Paris-Sud, CNRS/IN2P3, Université Paris-SaclaySOKENDAI (The Graduate University for Advanced Studies)Department of Physics, University of TokyoDepartment of Physics, Faculty of Science, King Abdulaziz UniversityBrookhaven National LaboratoryBudker Institute of Nuclear Physics SB RASMoscow Institute of Physics and TechnologyDeutsches Elektronen-SynchrotronKing Abdulaziz City for Science and TechnologySchool of Physics, University of SydneyII. Physikalisches Institut, Georg-August-Universität GöttingenUniversity of MississippiIndian Institute of Science Education and Research MohaliIndian Institute of Technology GuwahatiFaculty of Mathematics and Physics, Charles UniversityJ. Stefan InstituteH. Niewodniczanski Institute of Nuclear PhysicsJ. Stefan InstituteINFN — Sezione di NapoliFaculty of Mathematics and Physics, Charles UniversityNational Central UniversityDepartment of Physics and Institute of Natural Sciences, Hanyang UniversityDepartment of Physics and Institute of Natural Sciences, Hanyang UniversityKorea Institute of Science and Technology InformationSungkyunkwan UniversityIndian Institute of Technology HyderabadWayne State UniversityDeutsches Elektronen-SynchrotronIndian Institute of Technology BhubaneswarINFN — Sezione di NapoliINFN — Sezione di NapoliLAL, Univ. Paris-Sud, CNRS/IN2P3, Université Paris-SaclayFaculty of Mathematics and Physics, Charles UniversityKey Laboratory of Nuclear Physics and Ion-beam Application (MOE) and Institute of Modern Physics, Fudan UniversityBudker Institute of Nuclear Physics SB RASBudker Institute of Nuclear Physics SB RASPacific Northwest National LaboratoryDeutsches Elektronen-SynchrotronPacific Northwest National LaboratoryPanjab UniversityVirginia Polytechnic Institute and State UniversityBudker Institute of Nuclear Physics SB RASBudker Institute of Nuclear Physics SB RASIndian Institute of Technology HyderabadInstitut für Experimentelle Teilchenphysik, Karlsruher Institut für TechnologieJ. Stefan InstituteUniversity of CincinnatiNiigata UniversityNara Women’s UniversityDepartment of Physics, National Taiwan UniversityDepartment of Physics, National Taiwan UniversityGraduate School of Science, Nagoya UniversityGraduate School of Science, Nagoya UniversityInstitute of High Energy PhysicsSOKENDAI (The Graduate University for Advanced Studies)SOKENDAI (The Graduate University for Advanced Studies)Osaka City UniversityHigh Energy Accelerator Research Organization (KEK)Indiana UniversityKyungpook National UniversityDepartment of Physics, University of TokyoKennesaw State UniversityIndian Institute of Technology MadrasKyungpook National UniversityDeutsches Elektronen-SynchrotronKitasato UniversityMax-Planck-Institut für PhysikSoongsil UniversityKorea UniversityDepartment of Physics and Institute of Natural Sciences, Hanyang UniversityUniversity of CincinnatiFaculty of Mathematics and Physics, Charles UniversityUniversity of HawaiiJ. Stefan InstituteUniversity of MississippiBudker Institute of Nuclear Physics SB RASLudwig Maximilians UniversityPunjab Agricultural UniversityBudker Institute of Nuclear Physics SB RASYonsei UniversityKyungpook National UniversityPeking UniversityLudwig Maximilians UniversityHigh Energy Accelerator Research Organization (KEK)Department of Physics, National Taiwan UniversityKey Laboratory of Nuclear Physics and Ion-beam Application (MOE) and Institute of Modern Physics, Fudan UniversitySchool of Physics, University of MelbourneEarthquake Research Institute, University of TokyoUniversity of MiyazakiBudker Institute of Nuclear Physics SB RASINFN — Sezione di NapoliNara Women’s UniversityP.N. Lebedev Physical Institute of the Russian Academy of SciencesTata Institute of Fundamental ResearchKorea UniversityResearch Center for Nuclear Physics, Osaka UniversitySOKENDAI (The Graduate University for Advanced Studies)Indian Institute of Technology GuwahatiHigh Energy Accelerator Research Organization (KEK)Kyoto UniversityUniversity of PittsburghSOKENDAI (The Graduate University for Advanced Studies)University of HawaiiToho UniversityNippon Dental UniversityDepartment of Physics, University of TokyoP.N. Lebedev Physical Institute of the Russian Academy of SciencesP.N. Lebedev Physical Institute of the Russian Academy of SciencesBrookhaven National LaboratoryINFN — Sezione di NapoliKyungpook National UniversityLuther CollegeJ. Stefan InstituteVirginia Polytechnic Institute and State UniversityForschungszentrum JülichInstitut für Experimentelle Teilchenphysik, Karlsruher Institut für TechnologieLudwig Maximilians UniversityDeutsches Elektronen-SynchrotronUniversità di Napoli Federico IITata Institute of Fundamental ResearchSOKENDAI (The Graduate University for Advanced Studies)University of CincinnatiHigh Energy Accelerator Research Organization (KEK)Department of Physics, Tohoku UniversityUniversity of PittsburghÉcole Polytechnique Fédérale de Lausanne (EPFL)University of the Basque Country UPV/EHUInstitute of High Energy PhysicsUniversity of CincinnatiNiigata UniversityYamagata UniversitySchool of Physics, University of MelbourneUniversity of HawaiiKey Laboratory of Nuclear Physics and Ion-beam Application (MOE) and Institute of Modern Physics, Fudan UniversityDepartment of Physics, National Taiwan UniversityBudker Institute of Nuclear Physics SB RASP.N. Lebedev Physical Institute of the Russian Academy of SciencesJ. Stefan InstituteVirginia Polytechnic Institute and State UniversityPacific Northwest National LaboratoryTokyo Metropolitan UniversityJ-PARC Branch, KEK Theory Center, High Energy Accelerator Research Organization (KEK)INFN — Sezione di TorinoAdvanced Science Research Center, Japan Atomic Energy AgencyDeutsches Elektronen-SynchrotronTokyo Institute of TechnologyP.N. Lebedev Physical Institute of the Russian Academy of SciencesSOKENDAI (The Graduate University for Advanced Studies)Budker Institute of Nuclear Physics SB RASInstitut für Experimentelle Teilchenphysik, Karlsruher Institut für TechnologieUniversity of HawaiiBudker Institute of Nuclear Physics SB RASBudker Institute of Nuclear Physics SB RASDuke UniversityMax-Planck-Institut für PhysikNational United UniversityDepartment of Physics, National Taiwan UniversityKey Laboratory of Nuclear Physics and Ion-beam Application (MOE) and Institute of Modern Physics, Fudan UniversityDepartment of Physics, Tohoku UniversityKorea UniversityKorea UniversityDeutsches Elektronen-SynchrotronUniversity of Science and Technology of ChinaBudker Institute of Nuclear Physics SB RASP.N. Lebedev Physical Institute of the Russian Academy of SciencesAbstract We present the first model-independent measurement of the CKM unitarity triangle angle ϕ 3 using B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays, where D indicates either a D 0 or D ¯ $$ \overline{D} $$ 0 meson. Measurements of the strong-phase difference of the D → K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0 amplitude obtained from CLEO-c data are used as input. This analysis is based on the full Belle data set of 772 × 106 B B ¯ $$ \overline{B} $$ events collected at the Υ(4S) resonance. We obtain ϕ 3 = ( 5.7 − 8.8 + 10.2 $$ {5.7}_{-8.8}^{+10.2} $$ ±3.5±5.7) ° and the suppressed amplitude ratio r B = 0.323±0.147±0.023±0.051. Here the first uncertainty is statistical, the second is the experimental systematic, and the third is due to the precision of the strong-phase parameters measured from CLEO-c data. The 95% confidence interval on ϕ 3 is (−29.7, 109.5) ° , which is consistent with the current world average.http://link.springer.com/article/10.1007/JHEP10(2019)178CKM angle gammaCP violatione+-e- ExperimentsB physicsFlavor physics
spellingShingle The BELLE collaboration
P. K. Resmi
J. Libby
K. Trabelsi
I. Adachi
H. Aihara
S. Al Said
D. M. Asner
V. Aulchenko
T. Aushev
V. Babu
I. Badhrees
A. M. Bakich
C. Beleño
J. Bennett
V. Bhardwaj
B. Bhuyan
T. Bilka
J. Biswal
A. Bozek
M. Bračko
M. Campajola
D. Červenkov
A. Chen
B. G. Cheon
H. E. Cho
K. Cho
Y. Choi
S. Choudhury
D. Cinabro
S. Cunliffe
N. Dash
G. De Nardo
F. Di Capua
S. Di Carlo
Z. Doležal
T. V. Dong
S. Eidelman
D. Epifanov
J. E. Fast
T. Ferber
B. G. Fulsom
R. Garg
V. Gaur
N. Gabyshev
A. Garmash
A. Giri
P. Goldenzweig
B. Golob
Y. Guan
K. Hayasaka
H. Hayashii
W.-S. Hou
K. Huang
T. Iijima
K. Inami
G. Inguglia
A. Ishikawa
R. Itoh
M. Iwasaki
Y. Iwasaki
W. W. Jacobs
H. B. Jeon
Y. Jin
D. Joffe
A. B. Kaliyar
K. H. Kang
G. Karyan
T. Kawasaki
C. Kiesling
D. Y. Kim
K. T. Kim
S. H. Kim
K. Kinoshita
P. Kodyš
D. Kotchetkov
P. Krǐzan
R. Kroeger
P. Krokovny
T. Kuhr
R. Kumar
A. Kuzmin
Y.-J. Kwon
S. C. Lee
Y. B. Li
K. Lieret
D. Liventsev
P.-C. Lu
T. Luo
C. MacQueen
M. Masuda
T. Matsuda
D. Matvienko
M. Merola
K. Miyabayashi
R. Mizuk
G. B. Mohanty
H. K. Moon
T. Nakano
M. Nakao
K. J. Nath
M. Nayak
M. Niiyama
N. K. Nisar
S. Nishida
K. Nishimura
S. Ogawa
H. Ono
Y. Onuki
P. Pakhlov
G. Pakhlova
B. Pal
S. Pardi
H. Park
T. K. Pedlar
R. Pestotnik
L. E. Piilonen
E. Prencipe
M. T. Prim
M. Ritter
M. Röhrken
G. Russo
D. Sahoo
Y. Sakai
S. Sandilya
L. Santelj
T. Sanuki
V. Savinov
O. Schneider
G. Schnell
C. Schwanda
A. J. Schwartz
Y. Seino
K. Senyo
M. E. Sevior
V. Shebalin
C. P. Shen
J.-G. Shiu
B. Shwartz
E. Solovieva
M. Starič
Z. S. Stottler
J. F. Strube
T. Sumiyoshi
M. Takizawa
U. Tamponi
K. Tanida
F. Tenchini
M. Uchida
T. Uglov
S. Uno
Y. Usov
R. Van Tonder
G. Varner
A. Vinokurova
V. Vorobyev
A. Vossen
B. Wang
C. H. Wang
M.-Z. Wang
X. L. Wang
S. Watanuki
E. Won
S. B. Yang
H. Ye
Z. P. Zhang
V. Zhilich
V. Zhukova
First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays
Journal of High Energy Physics
CKM angle gamma
CP violation
e+-e- Experiments
B physics
Flavor physics
title First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays
title_full First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays
title_fullStr First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays
title_full_unstemmed First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays
title_short First measurement of the CKM angle ϕ 3 with B ± → D( K S 0 $$ {K}_{\mathrm{S}}^0 $$ π + π − π 0) K ± decays
title_sort first measurement of the ckm angle ϕ 3 with b d k s 0 k mathrm s 0 π π π 0 k decays
topic CKM angle gamma
CP violation
e+-e- Experiments
B physics
Flavor physics
url http://link.springer.com/article/10.1007/JHEP10(2019)178
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