6533b823fe1ef96bd127f3fd

RESEARCH PRODUCT

Measurement of the Absolute Branching Fraction of Ds+→τ+ντ via τ+→e+νeν¯τ

J. H. YinLei ZhangM. ShaoY. T. GuC. X. YueR. FarinelliStephen Lars OlsenJ. F. SunB. WangTao LuoH. L. MaT. LenzD. M. LiS. MarcelloW. G. LiLibo ZhangY. K. SunJ. ZhangZ. HuangZhe SunA. SarantsevD. H. WeiJ. S. LangeG. WilkinsonW. S. ChengYao ZhangG. LiM. KavatsyukH. C. ShiB. X. YuX. H. XieX. WangF. De MoriQ. P. JiS. SpataroX. P. XuZ. Y. YuanH. LiY. B. ChenJ. Z. ZhangJ. L. LiuB. X. ZhangShulei ZhangH. S. ChenH. S. SangJ. J. SongL. SunV. PrasadMeng WangL. H. WuLei LiC. D. FuC. Q. FengX. R. ChenG. F. CaoX. Y. ZhouYi JinM. PelizaeusY. L. FanH. L. DaiIgor BoykoC. W. WangG. RongQ. M. MaZ. Y. DengW. P. WangZ. H. QinH. QiI. UmanY. C. ZhuL. XiaS. JanchivA. CalcaterraZ. G. ZhaoC. ZhongL. Z. LiaoF. FeldbauerFeng LiuM. AblikimXiaoyu LiKrisztian PetersY. YuanXingguo LiP. W. LuoX D ShiY. J. MaoH. X. YangJianyu ZhangX. H. MoL. KochA. KhoukazS. L. YangX. SunG. R. LiaoQ. LiuL. K. LiH. LiangHuihui LiuJ. G. MesschendorpT. HeldC. F. RedmerJ. D. LuC. SchnierY. Q. WangM. H. YeL. L. WangH. CaiM. QiT. HoltmannL. LavezziJ. Y. LiuY. Y. WangK. RavindranM. GrecoJie FengR. Baldini FerroliA. GilmanY. C. XuC. LiS. MaldeM. Z. WangH. J. YangL. L. MaA. AmorosoV. RodinX. B. JiY. T. TianS. NakhoulM. FritschC. H. HeinzX. T. HuangL. Q. HuangD. Y. LiuJ. B. JiaoN. HüskenN. HüskenX. L. LuoS. MaldanerJ. X. TengTong ZhuM. AlbrechtYi ZhangM. KuemmelMatthew Glenn KurthP. PatteriA. DbeyssiW. D. LiK. Y. LiuM. LellmannM. H. YeK. BegzsurenM. Q. JingHaiping PengH. Y. ZhangJianhao ZhangXiao-rui LyuZ. X. MengR. P. GuoS. Q. QuW. ShanX. H. BaiAngelo RivettiC. H. LiS. JaegerM. G. ZhaoW. Ikegami AnderssonX. F. CuiXujin YuanY. BanF. BianchiX. X. MaJ. ZhuR. KliemtKe WangX. F. WangA. A. ZafarP. LarinLi YuanX. L. LuF. H. HeinsiusL. Y. DongChristoph HeroldS. B. LiuG. Y. HouL. ZhangC. DongS. SosioY. NefedovA. MangoniG. MezzadriA. GuskovJie YuW. B. YanK. H. RashidT. T. HanS. J. ZhaoY. F. WangJ. ZhaoM. X. LuoDylan Jaide WhiteS. P. WenK. X. SuY. G. GaoEvelina GersabeckK. J. ZhuD. V. DedovichFeng YanG. CibinettoY. T. LiangM. R. AnW. H. WangX. R. ZhouL. M. GuD. C. ShanF. NerlingQ. J. XuX. D. ZhangX. D. ShiS. J. ChenT. HussainCheng LiX. Y. MaJ. Q. LiA. Q. GuoWen-zhao LiuW. X. GongH. F. ShenA. BortoneXuanhong LouViktor ThorénZongyuan WangNasser Kalantar-nayestanakiM. N. AchasovA. PathakJ. F. ShangguanJiaming LiP. R. LiMuhammad IrshadZ. P. MaoB. KopfW. Y. HanYue PanS. AhmedH. B. LiY. D. WangG. Y. TangZ. H. LeiF. WeidnerK. L. HeI. BalossinoZiyi WangM. HimmelreichY. X. YangP. T. GeA. G. DenigJ. BlomsC. L. LuoJ. L. ZhangF. F. SuiQ. ZhouM. H. GuR. KiuchiJoachim PetterssonY. SchelhaasH. Y. ZhangM. Z. WangJimin ZhaoT. Y. QiHaiwen LiuB. ZhongL. B. GuoH. MuramatsuA. N. ZhuUlrich WiednerP. KieseYuan HouQ. OuyangS. S. FangC. Y. GuanM. BertaniX. P. QinY. B. LiuZ. J. ChenC. X. YuJie ZhaoG. F. ChenR. A. BriereAlexey ZhemchugovH. M. HuHuimin WangQ. ZhaoX. LiuJ. Y. ZhangX. S. JiangS. PacettiY. H. TanW. H. TianJ. FangY. Z. SunCh. RosnerHuanhuan LiuB. ZhengR. G. PingX. L. JiY ZengH. J. LuJ. G. LuYanping HuangG. FeliciXiang ZhouF. A. HarrisW. L. ChangKe LiH. B. JiangXiangcheng PanJiawei ZhangI. K. KeshkJ. LibbyYaquan FangL. YangYongsheng GaoR. AlibertiM. Y. DongY. K. HengC. X. LinWei XuXu ShanH. LeithoffJ. L. LiSerkant Ali CetinP. AdlarsonF. E. MaasW. GradlT. HuY. H. ZhengM. RumpGang ZhaoY. X. SongX. S. KangF. LiJohn Jake LaneA. LavaniaH. B. LiuH. H. ZhangM. M. MaPeilian LiuO. BakinaA. YuncuD. Y. WangM. RoloL. Q. QinF. C. MaX. H. LiH. K. SunY. X. TanGuoqiang YuL. WollenbergK. SchoenningZhiyong ZhangM. ScodeggioS. QianQ. AnJialun PingY. G. XieXingchao DaiB. S. ZouJ. H. ZouX. Y. ZhangLi ZhouP. X. ShenY. ZhangX. L. WangG. X. SunH. XiaoZiyuan LiNiklaus BergerJ. B. LiuW. M. SongY. Y. JiF. CossioRuiting MaY. P. GuoY. J. SunYifan YangS. X. DuZ. WuW. H. WangS. H. ZhuS. S. SunZ. JiaoFu-hu LiuK. J. ZhuZ. QianT. YuX. K. ZhouZhiqing ZhangY. B. ZhaoY. P. LuP. P. SuT. LiuJ. F. QiuJ. DongH. J. LiJ. TangF. X. LuYunlong ZhangM. H. LiuL. FavaZhi YangD. BettoniWenbin QianS. NisarC. J. TangY. HuZhiqing LiuY. P. LuR. PolingJianping ZhengZ. A. LiuX. S. QinR. E. MitchellT. J. MinK. Y. LiuI. GarziaC. GengT. JohanssonJ. J. ZhangJ. F. ChangFang LiuM. DestefanisR. S. ShiI. DenysenkoZujian WangY. BaiShuai LiuY. F. WangGuangyi ZhangO. B. KolcuH. R. QiYu-xiao LiuX. CaiX. Q. HaoYan ZhangJiangqiao HuZ. NingS. Y. XiaoL. YanY. H. ZhengCong-feng QiaoN. Yu. MuchnoiY. H. ZhangL. D. LiuW. J. ZhuJinfei WuZ. Y. WangW. ImoehlC. X. LiuXu YanR. T. MaY. DingB. J. LiuT. Y. XingD. Y. ChenW. KühnZ. Y. YouZ. A. ZhuW. C. YanC. P. ShenL. J. WuX. WuS. F. ZhangY. J. MoR. KappertQ. P. JiG. F. XuX. Y. ShenS. GuL. GongK. H. QiShan JinK. GoetzenB. C. KeZ. J. XiaoA. Q. ZhangS. ZhangH.j. WangY. X. ZhaoY. H. XieM. MaggioraLing ZhaoLei ZhaoZ. L. HouMagnus WolkeY. F. LiangR. E. De BoerW. Y. SunAndrzej KupscC. Z. YuanN. CaoM. L. ChenSi LiGuangshun HuangM. KuessnerTao SunX. DongG. A. ChelkovI. B. Nikolaev

subject

Quantum chromodynamicsPhysicsCrystallographyAnnihilation010308 nuclear & particles physicsBranching fraction0103 physical sciencesLattice (group)General Physics and Astronomy010306 general physics01 natural sciencesLeptonStandard Model

description

Using a dataset of 6.32  fb^{-1} of e^{+}e^{-} annihilation data collected with the BESIII detector at center-of-mass energies between 4178 and 4226 MeV, we have measured the absolute branching fraction of the leptonic decay D_{s}^{+}→τ^{+}ν_{τ} via τ^{+}→e^{+}ν_{e}ν[over ¯]_{τ}, and find B_{D_{s}^{+}→τ^{+}ν_{τ}}=(5.27±0.10±0.12)×10^{-2}, where the first uncertainty is statistical and the second is systematic. The precision is improved by a factor of 2 compared to the previous best measurement. Combining with f_{D_{s}^{+}} from lattice quantum chromodynamics calculations or the |V_{cs}| from the CKMfitter group, we extract |V_{cs}|=0.978±0.009±0.012 and f_{D_{s}^{+}}=(251.1±2.4±3.0)  MeV, respectively. Combining our result with the world averages of B_{D_{s}^{+}→τ^{+}ν_{τ}} and B_{D_{s}^{+}→μ^{+}ν_{μ}}, we obtain the ratio of the branching fractions B_{D_{s}^{+}→τ^{+}ν_{τ}}/B_{D_{s}^{+}→μ^{+}ν_{μ}}=9.72±0.37, which is consistent with the standard model prediction of lepton flavor universality.

https://doi.org/10.1103/physrevlett.127.171801