6533b828fe1ef96bd12877ea
RESEARCH PRODUCT
Search for theY(4140)viae+e−→γϕJ/ψats=4.23, 4.26 and 4.36 GeV
S. HanW. C. YanZhiqiang LiuL. Q. QinL. P. ZhouH. H. ZhangS. S. FangH. J. LuY. J. MaoZ. J. SunM. SavrieX. CaiH. P. ChengTao LiY. H. GuanF. A. HarrisA. A. ZafarM. H. GuJ. Y. LiuB. X. ZhangF. C. MaD. X. LinZ. J. XiaoX. Y. ZhangH. S. ChenY. L. HanX. L. LiLei ZhaoZ. Y. HeYang YangA. DenigD. Y. WangJ. F. HuH. H. LiuZhiqing LiuQ. GaoY. ZhangJ. C. LiT. JohanssonM. QiB. ZhengL. H. WuYuehong XieW. B. YanJ. Z. FanA. ZhemchugovJ. V. BennettC. X. LiuX. L. JiY. DingS. SpataroS. SpataroD. BettoniQ. M. MaG. X. SunA. ZalloKai LiuI. GarziaJ. L. ZhangX. LiuJimin ZhaoX. K. ChuZ. H. QinM. L. ChenN. Yu. MuchnoiY. H. ZhengZ. G. WangY. X. YangJ. F. QiuX. H. MoY. B. ChenMagnus WolkeD. P. JinJ. F. SunF. NerlingM. GrecoM. GrecoS. B. LiuL. B. GuoD. H. WeiR. Q. LuB. ZhongY. XiaH. B. LiuSai-juan ChenT. GuoC. D. FuSerkant Ali CetinB. SpruckA. SarantsevH. Y. ZhangG. F. CaoM. R. ShepherdYaquan FangM. LvJ. P. LiuA. HafnerQ. ZhaoY. N. PuY. Z. SunY. ZengC. P. ShenS. G. WangO. B. KolcuS. MarcelloS. MarcelloY. B. LiuH. L. MaA. YuncuS. X. DuW. ShanJ. G. MesschendorpJ. Q. ZhangS. J. ZhaoXiang ZhouY. BanJ. H. YinK. H. RashidDayong WangN. QinP. L. LiuX. L. LuoJ. P. DaiG. ChenX. R. ChenZ. HaddadiF. FeldbauerW. KuehnL. L. MaA. AmorosoA. AmorosoX. D. RuanH. W. YuR. G. PingB. S. ZouLi ZhouI. UmanJ. J. ZhangX. Y. ShenQ. A. MalikGuangshun HuangQ. J. XuJ. H. ZouA. DbeyssiE. BogerXiaofeng ZhuJ. Z. ZhangC. DongS. SosioS. SosioT. HuK. SchoenningU. WiednerJ. DongJ. S. LangeQun-yao WangZ. JiaoY. Q. WangC. L. LuoW. D. LiX. N. MaL. YangY. T. LiangI. DenysenkoY. F. WangX. S. QinM. RipkaX. Y. SongP. L. WangM. UllrichH. LoehnerO. BondarenkoY. T. GuJie ZhaoLili ZhangJ. MinI. B. NikolaevQ. P. JiJ. Y. ZhangS. PacettiR. Baldini FerroliM. WangE. FioravantiK. PetersA. JulinK. ZhangM. LaraM. X. LuoZ. A. ZhuF. De MoriF. De MoriJ. G. LuXiao-rui LyuS. NisarC. J. TangY. HuY. P. LuZ. T. SunY. P. LuZ. P. MaoF. LiBibo KeZ. A. LiuX. L. KangS. P. WenL. G. XiaJ. ZhuangJ. S. HuangX. C. ChenM. N. AchasovM. PelizaeusY. J. MoX. Y. ZhouJ. W. ZhangZ. H. WangG. M. HuangX. N. LiQ. W. ZhaoH. B. LiL. Y. DongC. HuGiulietto FeliciJ. C. ChenX. C. LouX. C. LouC. C. ZhangI. TapanJ. H. LiuW. GradlAndrzej KupscW. L. YuanJ. M. BianL. L. WangZhenyu ZhangW. LaiG. LiM. FritschC. F. RedmerXiaocong AiH. MuramatsuH. S. ChenF. F. AnT. WeberH. M. HuChi ZhangM. KornicerP. F. DuanS. MaX. R. ZhouBrent J. LiuD. TothZ. Y. DengCheng LiB. WangO. AlbayrakB. X. YuQ. P. JiJ. W. ZhaoB. KlossM. AblikimB. L. WangL. S. WangN. Kalantar-nayestanakiX. Y. NiuM. H. YeY. S. ZhuJ. P. ZhengM. KavatsyukH. P. HuangH. X. YangLing ZhaoX. S. KangHeng-yun YeYang QinLiqing XuS. H. ZhangQ. OuyangC. X. YuH. CaiX. Y. MaV. SantoroD. XiaoY. H. ZhangZ. WuK. J. ZhuY. J. SunK. GoetzenY. K. HengI. BoykoH. P. PengXuantong ZhangC. Morales MoralesY. HuangM. H. YeE. H. ThorndikeK. LiZ. Y. WangX. TangX. K. ZhouFang LiuP. WeidenkaffM. ShaoL. D. LiuO. CakirJin LiS. S. SunW. J. ZhengM. DestefanisM. DestefanisY. NefedovG. ChelkovZ. NingL. L. JiangQ. AnY. P. GuoC. Z. YuanM. G. ZhaoB. KopfS. ZhuP. LarinG. F. XuJ. B. JiaoX. F. WangHuan RenG. S. VarnerX. B. JiB. Y. ZhangK. WangD. H. ZhangK. L. HeM. Y. DongD. W. BennettJ. F. ChangZ. L. HouX. FangZujian WangY. GuoT. C. ZhaoFeng LiuS. QianZ. P. ZhangP. R. LiJ. L. PingFu-hu LiuC. Q. FengZ. G. ZhaoS. SchumannYao WangJ. Z. BaiL. FavaL. FavaF. E. MaasY. F. LiangH. L. DaiG. R. LiaoP. X. ShenM. BertaniL. W. JiangZhiqing ZhangD. DedovichR. E. MitchellT. HussainL. YanP. L. WangY. GaoW. P. WangF. BianchiF. BianchiT. LuoT. MaM. TiemensP. PatteriXiao-hai LiuY. YuanR. KliemtJie YuT. J. MinK. J. ZhuG. ZhaoH. LiangG. CibinettoQiunan XuA. Q. GuoG. RongW. M. SongJ. FangChuan LiuW. G. LiX. M. LiX. P. XuY. B. ZhaoH. M. LiuW. X. GongQ. LiuS. L. OlsenRoy A. BriereR. PolingX. S. JiangY. C. ZhuS. L. NiuX. Q. LiD. M. LiS. JinK. Y. LiuJ. B. WeiC. F. QiaoK. MoriyaZ. B. LiC. H. LiD. J. AmbroseM. AlbrechtY. H. YanX. T. HuangA. CalcaterraM. MaggioraM. MaggioraD. Cronin-hennessyH. Y. ShengT. Heldsubject
PhysicsNuclear physicsNuclear and High Energy PhysicsTheoretical physicsElectron–positron annihilationRadiative transitionHigh Energy Physics::ExperimentStorage ringdescription
Using data samples collected at center-of-mass energies root s = 4.23, 4.26, and 4.36 GeV with the BESIII detector operating at the BEPCII storage ring, we search for the production of the charmoniumlike state Y(4140) through a radiative transition followed by its decay to phi J/psi. No significant signal is observed and upper limits on sigma[e(+)e(-) -> gamma Y(4140)] . B(Y(4140) -> phi J/psi at the 90% confidence level are estimated as 0.35, 0.28, and 0.33 pb at root s = 4.23, 4.26, and 4.36 GeV, respectively.
year | journal | country | edition | language |
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2015-02-05 | Physical Review D |