Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach

In this work, within the QCD factorization approach, we study the localized integrated CP violation in the B−→π−π+π− decay and the branching fraction of the B−→σπ− decay. Both the resonance and nonresonance contributions are included when we study the localized CP asymmetry in the B−→π−π+π− decay. T...

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Main Authors: Jing-Juan Qi, Zhen-Yang Wang, Xin-Heng Guo, Xian-Wei Kang, Zhen-Hua Zhang
Format: Article
Language:English
Published: Elsevier 2019-11-01
Series:Nuclear Physics B
Online Access:http://www.sciencedirect.com/science/article/pii/S0550321319302743
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spelling doaj-36425073657f43449778f8e24f275f072020-11-25T01:18:48ZengElsevierNuclear Physics B0550-32132019-11-01948Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approachJing-Juan Qi0Zhen-Yang Wang1Xin-Heng Guo2Xian-Wei Kang3Zhen-Hua Zhang4Junior College, Zhejiang Wanli University, Zhejiang 315101, ChinaPhysics Department, Ningbo University, Zhejiang 315211, ChinaCollege of Nuclear Science and Technology, Beijing Normal University, Beijing 100875, China; Corresponding authors.College of Nuclear Science and Technology, Beijing Normal University, Beijing 100875, ChinaSchool of Nuclear and Technology, University of South China, Hengyang, Hunan 421001, China; Corresponding authors.In this work, within the QCD factorization approach, we study the localized integrated CP violation in the B−→π−π+π− decay and the branching fraction of the B−→σπ− decay. Both the resonance and nonresonance contributions are included when we study the localized CP asymmetry in the B−→π−π+π− decay. The resonance contributions from the scalar σ(600) and vector ρ0(770) mesons are included. For the σ(600) meson, we apply both the Breit-Wigner and Bugg models to deal with its propagator, and obtain B(B−→σ(600)π−)<1.67×10−6 and B(B−→σ(600)π−)<1.946×10−5 in these two models, respectively. We find that there is no allowed divergence parameters ρS and ϕS to satisfy the experimental data ACP(π−π+π−)=0.584±0.082±0.027±0.007 in the region mπ+π−high2>15 GeV2 and mπ+π−low2<0.4 GeV2 and the upper limit of B(B−→σ(600)π−) in the Breit-Wigner model, however, there exists the region ρS∈[1.70,3.34] and ϕS∈[0.50,4.50] satisfying the data for ACP(π−π+π−) and the upper limit of B(B−→σ(600)π−) in the Bugg model. This reveals that the Bugg model is more plausible than the Breit-Wigner model to describe the propagator of the σ(600) meson even though the finite width effects are considered in both models. The large values of ρS indicate that the contributions from weak annihilation and hard spectator scattering processes are both large, especially, the weak annihilation contribution should not be neglected for B decays to final states including a scalar meson.http://www.sciencedirect.com/science/article/pii/S0550321319302743
collection DOAJ
language English
format Article
sources DOAJ
author Jing-Juan Qi
Zhen-Yang Wang
Xin-Heng Guo
Xian-Wei Kang
Zhen-Hua Zhang
spellingShingle Jing-Juan Qi
Zhen-Yang Wang
Xin-Heng Guo
Xian-Wei Kang
Zhen-Hua Zhang
Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach
Nuclear Physics B
author_facet Jing-Juan Qi
Zhen-Yang Wang
Xin-Heng Guo
Xian-Wei Kang
Zhen-Hua Zhang
author_sort Jing-Juan Qi
title Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach
title_short Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach
title_full Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach
title_fullStr Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach
title_full_unstemmed Study of localized CP violation in B− → π−π+π− and the branching ratio of B− → σ(600)π− in the QCD factorization approach
title_sort study of localized cp violation in b− → π−π+π− and the branching ratio of b− → σ(600)π− in the qcd factorization approach
publisher Elsevier
series Nuclear Physics B
issn 0550-3213
publishDate 2019-11-01
description In this work, within the QCD factorization approach, we study the localized integrated CP violation in the B−→π−π+π− decay and the branching fraction of the B−→σπ− decay. Both the resonance and nonresonance contributions are included when we study the localized CP asymmetry in the B−→π−π+π− decay. The resonance contributions from the scalar σ(600) and vector ρ0(770) mesons are included. For the σ(600) meson, we apply both the Breit-Wigner and Bugg models to deal with its propagator, and obtain B(B−→σ(600)π−)<1.67×10−6 and B(B−→σ(600)π−)<1.946×10−5 in these two models, respectively. We find that there is no allowed divergence parameters ρS and ϕS to satisfy the experimental data ACP(π−π+π−)=0.584±0.082±0.027±0.007 in the region mπ+π−high2>15 GeV2 and mπ+π−low2<0.4 GeV2 and the upper limit of B(B−→σ(600)π−) in the Breit-Wigner model, however, there exists the region ρS∈[1.70,3.34] and ϕS∈[0.50,4.50] satisfying the data for ACP(π−π+π−) and the upper limit of B(B−→σ(600)π−) in the Bugg model. This reveals that the Bugg model is more plausible than the Breit-Wigner model to describe the propagator of the σ(600) meson even though the finite width effects are considered in both models. The large values of ρS indicate that the contributions from weak annihilation and hard spectator scattering processes are both large, especially, the weak annihilation contribution should not be neglected for B decays to final states including a scalar meson.
url http://www.sciencedirect.com/science/article/pii/S0550321319302743
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