6533b872fe1ef96bd12d2e59
RESEARCH PRODUCT
Future Physics Programme of BESIII
B. J. LiuT. Y. XingKe WangW. KühnZ. G. WangHaiwen LiuZ. Y. YouZ. A. ZhuT. WeberJ. F. SunYunlong ZhangC. P. ShenJ. D. LuD. BettoniB. L. WangT. C. ZhaoJ. Y. ZhangD. DedovichH. W. WenY. K. HengM. RichterZ. NingS. Y. XiaoS. MarcelloY. ZengY. J. LinZhe SunS. LussoF. LiZongyuan WangF. C. MaQ. LiuX. K. ZhouGuangshun HuangW. G. LiY. K. SunShuangli YangXiaoyu ZhouL. YanM. KuessnerL. YangM. G. ZhaoY. H. YangX. X. MaR. P. GuoL. L. MaL. GongX. CaiS. J. ZhaoX. N. MaXiao-zhou LiQ. J. XuXuanhong LouViktor ThorénBibo KeC. Morales MoralesXiaofeng ZhuJ. Z. ZhangJ. J. SongL. SunQ. P. JiS. SpataroX. P. XuSébastien Descotes-genonTao LuoZ. A. LiuJ. C. LiQ. OuyangLei LiH. J. LuG. Y. TangB. X. YuP. WeidenkaffF. H. HeinsiusJérôme CharlesS. QianJialun PingA. AmorosoZ. X. MengX. A. XiongW. B. YanM. N. AchasovM. N. AchasovX. WangR. KappertM. KavatsyukS. S. FangJ. G. LuJ. LibbyL. J. WuY. J. MoJ. Q. ZhangS. L. NiuF. Y. LiA. CalcaterraJ. F. QiuS. P. WenW. ImoehlXi YuanF. F. AnJ. ZhuangK. ZhangS. AhmedY. X. YangX. R. ZhouY. T. TanA. DbeyssiT. LiuW. GradlJie ZhaoL. FavaAlexey A. PetrovYaquan FangY. H. XieA. A. ZafarC. SowaF. E. MaasT. HuH. S. ChenD. X. LinM. MaggioraM. X. LuoS. PacettiM. H. YeS. F. ZhangX. Q. LiY. F. LongCheng LiX. Y. ZhangY. ZhengM. RipkaQ. P. JiAngelo RivettiH. M. HuD. Y. WangM. GrecoM. L. ChenX D ShiLing ZhaoXiao-rui LyuM. QiH. J. YangH. J. YangY. NefedovB. X. ZhangM. RoloLei ZhaoY. J. MaoH. X. YangI. GarziaN. HueskenY. F. LiangD. P. JinK. H. RashidK. H. RashidKlaus PetersKlaus PetersY. T. LiangL. KochA. KhoukazG. F. XuZ. L. HouYang ZhangXu ZhouR. Baldini FerroliJ. DongKe LiHuanhuan LiuG. FeliciR. PolingT. KhanM. BertaniH. L. JiangJianping ZhengQ. ZhaoY. Z. SunXiang ZhouI. K. KeshkPatrik AdlarsonC. X. LinM. RumpGang ZhaoG. R. LiaoB. Q. WangZhiqing LiuA. PitkaChenJ. B. LiuB. GarillonM. Z. WangY. G. GaoL. Y. DongN. QinM. Y. DongHuihui LiuJ. F. HuJ. F. HuJ. G. MesschendorpJ. W. ZhangJ. ZhuLei ZhangV. PrasadK. Y. LiuS. MaldeG. ChelkovK. SchoenningQ. Y. LiB. S. ZouWang MengZ. Y. DengO. BakinaA. Q. GuoX. N. LiX. Y. SongF. FeldbauerH. B. LiuC. J. TangS. Q. QuT. J. MinM. AlbrechtP. L. WangCui LiY. ZhangJ. Y. LiuR. KliemtS. HanYi-tao WangH. L. DaiW. Ikegami AnderssonY. J. SunYifan YangY. P. LuLorenzo CalibbiTord JohanssonMuhammad IrshadZhiyong ZhangI. BoykoC. Z. YuanN. CaoHaiping PengZ. L. HuangFeng LiuZ. Q. ZhangX. F. WangF. NerlingF. NerlingM. KuemmelMatthew Glenn KurthNiklaus BergerX. P. QinM. AlekseevJ. H. ZouFeng-kun GuoDean LiuDean LiuW. ShanS. B. LiuL. M. GuW. D. LiL. H. WuX. C. DaiP. X. ShenZ. WuZhiqing ZhangP. KieseC. W. WangG. RongHai-bo LiQ. M. MaC. L. LuoY. HuShan JinO. B. KolcuO. B. KolcuY. P. LuK. GoetzenL. LavezziQ. ZhouH. J. LiH. Y. ChengZhibing LiQ. L. XiuX. F. CuiM. SavrieB. T. TsedneeA. MustafaJ. L. ZhangF. F. SuiYi JinR. A. BriereJ. BlomsM. H. GuMichael PapenbrockF. YanR. KiuchiS. S. SunQ. GaoY. N. GaoX. L. GaoJ. W. LiA. MangoniX. Q. HaoJ. C. ChenL. XiaY. H. ZhengR. M. WangX. S. JiangY. BanCong-feng QiaoF. A. HarrisW. L. ChangYi ZhangHui ZhangC. C. ZhangH. Y. ShengB. ZhongL. B. GuoI. B. NikolaevI. B. NikolaevEvelina GersabeckM. DestefanisD. Y. LiuY. YuanJ. B. JiaoY. S. ZhuJ. MinY. J. XiaoY. FuA. GuskovYu ZhangW. P. WangT. Y. QiC. X. YuN. Yu. MuchnoiN. Yu. MuchnoiX. S. QinJ. Z. FanH. LeithoffC. DongW. J. ZhuS. SosioHao LiangY. H. YanI. DenysenkoS. NakhoulS. NakhoulX. D. ShiJ. H. YinZ. H. QinH. H. WangWei XuJie YuY. H. ZhangH. MuramatsuA. N. ZhuUlrich WiednerJ. W. ZhaoX. L. LuoM. WolkeM. ShaoY. T. GuB. KopfZ. J. XiaoR. E. MitchellSemen EidelmanTao ZhangTao ZhangY. C. ZhuY. X. XiaS. H. ZhuB. ZhengR. G. PingA. DenigJoachim PetterssonY. F. WangMinglin MaK. L. HeR. X. YangJ. P. DaiJ. P. DaiXingyu ZhouX. L. JiZ. Q. YangR. FarinelliM. FritschC. F. RedmerZ. Y. WangYi ChenFang LiuXu ShanT. HussainX. TangX. Y. MaT. HeldK. BegzsurenX. Y. JiangM. Z. WangA. ZhemchugovA. ZhemchugovGuo-ming ChenW. X. GongJ. S. HuangJimin ZhaoStephen Lars OlsenW. C. YanH. L. MaT. LenzD. M. LiX. T. HuangM. AblikimS. NisarS. NisarJonathan L. RosnerC. X. LiuZ. G. ZhaoP. L. LiXiaozhong HuangJ. F. ChangF. BianchiX. S. KangL. Z. LiaoA. SarantsevA. SarantsevMatthew Glenn KurthD. H. WeiJ. S. LangeB. Y. ZhangX. H. SunF. CossioK. J. ZhuH. H. ZhangM. PelizaeusK. J. ZhuG. F. CaoI. UmanZ. J. SunYi-fang ZhaoAndrzej KupscG. CibinettoKe LiuA. YuncuA. YuncuS. MaldanerY. G. XieXuejun WangP. W. LuoQ. A. MalikG. MezzadriLi ZhouS. X. DuP. LarinZ. L. DouX. H. MoY. PanL. S. WangN. Kalantar-nayestanakiM. H. YeQ. AnL. P. ZhouP. R. LiL. K. LiV. RodinJ. ChaiY. M. MaZ. P. MaoL. L. WangH. CaiX. B. JiG. X. SunJ. V. BennettY. R. HouP. PatteriJacek BiernatX. LiuJ. FangQ. Q. SongZ. GaoF. De MoriZ. JiaoFu-hu LiuD. H. ZhangCh. RosnerBingxuan LiuBingxuan LiuG. WilkinsonXiang LiuW. S. ChengYao ZhangG. LiSerkant Ali CetinA. GilmanSai-juan ChenJun-yi ZhangC. D. FuY. P. GuoC. Q. FengZ. P. ZhangY. B. LiuXingguo LiZujian WangY. BaiLiqing XuX. Y. ShenY. Dingsubject
Nuclear and High Energy PhysicsParticle physicsX(1835)charmed mesonMesoncharmoniumNuclear TheoryFOS: Physical sciences7. Clean energy01 natural sciencesHigh Energy Physics - ExperimentNOSubatomär fysikHigh Energy Physics - Experiment (hep-ex)High Energy Physics - Phenomenology (hep-ph)Hadron physicsHadron spectroscopySubatomic Physics0103 physical sciences[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]ddc:530Charm (quantum number)charmed baryontau010306 general physicsNuclear ExperimentInstrumentationanti-p pactivity reportPhysicsthreshold: enhancementLuminosity (scattering theory)BES010308 nuclear & particles physicshadron spectroscopyHigh Energy Physics::PhenomenologyThe RenaissanceAstronomy and AstrophysicsBeijing Stor: upgradeBaryonHigh Energy Physics - PhenomenologyUpgradeexperimental equipment[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph]High Energy Physics::Experimentluminosity: highdescription
There has recently been a dramatic renewal of interest in the subjects of hadron spectroscopy and charm physics. This renaissance has been driven in part by the discovery of a plethora of charmonium-like $XYZ$ states at BESIII and $B$ factories, and the observation of an intriguing proton-antiproton threshold enhancement and the possibly related $X(1835)$ meson state at BESIII, as well as the threshold measurements of charm mesons and charm baryons. We present a detailed survey of the important topics in tau-charm physics and hadron physics that can be further explored at BESIII over the remaining lifetime of BEPCII operation. This survey will help in the optimization of the data-taking plan over the coming years, and provides physics motivation for the possible upgrade of BEPCII to higher luminosity.
year | journal | country | edition | language |
---|---|---|---|---|
2020-04-01 |