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BESIII飞行时间计数器束流实验的模拟研究 被引量:1
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作者 蒋林立 张子平 +28 位作者 毛泽普 王贻芳 衡月昆 吴冲 赵力 孙志嘉 马秋梅 马想 王大勇 邓子艳 尤郑昀 文硕平 王喆 刘怀民 李卫东 张长春 邱进发 何苗 张学尧 张晓梅 张瑶 汤睿 郑直 冒亚军 俞国威 夏宇 袁野 黄性涛 臧石磊 《核电子学与探测技术》 CAS CSCD 北大核心 2007年第1期23-26,69,共5页
利用GEANT4软件包模拟了BESIII TOF模型束流实验,模拟结果和实验结果进行了比较,并解释了ESR膜作包装材料比用铝膜作包装时间分辨反而差的现象,以及5cm厚的闪烁体比4cm和6cm厚的闪烁体时间分辨好的实验结果。
关键词 飞行时间计数器 besiii束流实验 GEANT4
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BESIII离线系统和性能测试 被引量:1
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作者 孙永昭 李卫东 +35 位作者 毛泽普 马秋梅 马想 王亮亮 王纪科 邓子艳 尤郑昀 文硕频 边渐鸣 孙胜森 朱永生 刘怀民 刘春秀 伍灵慧 李海波 李刚 张长春 张令 张建勇 邹佳恒 邱进发 张瑶 张学尧 何苗 何康林 季晓斌 杨明 苑长征 冒亚军 俞国威 莫晓虎 袁野 曹国富 黄彬 谢宇广 臧石磊 《核电子学与探测技术》 CAS CSCD 北大核心 2007年第5期842-846,共5页
本文介绍了BESIII离线数据处理软件系统的构成以及数据处理的主要流程;给出了利用工具软件TAU(Tuning and Analysis Utilities)对系统性能进行的测试结果,据此结果估算了BESIII实验所需的计算资源,并且与BESIII设计报告的相关部分进行比... 本文介绍了BESIII离线数据处理软件系统的构成以及数据处理的主要流程;给出了利用工具软件TAU(Tuning and Analysis Utilities)对系统性能进行的测试结果,据此结果估算了BESIII实验所需的计算资源,并且与BESIII设计报告的相关部分进行比较,说明了BESIII计算机环境的设计基本满足BESIII离线数据处理的要求。 展开更多
关键词 北京谱仪besiii 离线数据处理 性能测试
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BESIII在线直方图软件的设计与实现
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作者 李飞 朱科军 +2 位作者 赵京伟 王靓 刘英杰 《核电子学与探测技术》 CAS CSCD 北大核心 2007年第3期462-465,461,共5页
在线直方图软件是BESIII数据获取系统的重要组成部分。介绍了在线直方图软件的主要需求。通过对主要组件的设计和实现,描述了在分布式环境中如何产生、传输和收集直方图,还特别介绍了通过xml配置数据库实现的灵活简便易扩展的配置方式。
关键词 在线直方图 数据获取 北京谱议三 besiii
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云计算在BESIII数据处理与分析中的应用 被引量:1
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作者 赵祥虎 张晓梅 颜田 《核电子学与探测技术》 CAS 北大核心 2016年第7期750-754,共5页
为适应BESIII实验数据的积累和资源需求的大幅增长,论文从性能评估、软件部署、用户使用、资源调度、数据管理等五个关键问题对BESIII数据处理与分析利用云计算资源展开研究,并通过BESIII分布式计算系统对云计算资源的整合实现了BESIII... 为适应BESIII实验数据的积累和资源需求的大幅增长,论文从性能评估、软件部署、用户使用、资源调度、数据管理等五个关键问题对BESIII数据处理与分析利用云计算资源展开研究,并通过BESIII分布式计算系统对云计算资源的整合实现了BESIII作业在云资源上的弹性调度和成功运行,这将为今后大规模应用奠定基础。 展开更多
关键词 besiii数据处理 分布式计算 云计算 虚拟化
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BESIII飞行时间探测器塑料闪烁体性能检测 被引量:2
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作者 赵玉达 衡月昆 +2 位作者 孙志嘉 吴金杰 王贻芳 《核技术》 EI CAS CSCD 北大核心 2008年第4期241-244,共4页
北京谱议(BESIII)重大改造工程中飞行时间探测器所使用的各个塑料闪烁体需要严格测量和质量控制,包括机械尺寸、有效衰减长度和相对光产额。我们用宇宙线测量塑料闪烁体的衰减长度时,利用飞行时间探测器本身的时间信息重建出宇宙线的位... 北京谱议(BESIII)重大改造工程中飞行时间探测器所使用的各个塑料闪烁体需要严格测量和质量控制,包括机械尺寸、有效衰减长度和相对光产额。我们用宇宙线测量塑料闪烁体的衰减长度时,利用飞行时间探测器本身的时间信息重建出宇宙线的位置和方向,宇宙线在闪烁体上的光产额通过其两端光电倍增管的电荷信息来反应,这样测量的闪烁体的有效衰减长度统计量大、准确并且快速。检测结果表明,闪烁体的各项指标达到了的设计要求。 展开更多
关键词 北京谱议 飞行时间探测器 塑料闪烁体 衰减长度 光产额
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BESIII数据获取系统中VME机箱读出模型的设计及分析 被引量:4
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作者 陶宁 初元萍 赵京伟 《电子测量与仪器学报》 CSCD 2004年第4期33-39,45,共8页
本文着重介绍了应用于BESIII数据获取系统读出分支的读出模型的设计。文中简要介绍了北京谱仪系统及其数据获取系统对读出子系统的要求 ,并详细介绍了该模型的系统结构、数据处理流程和测试实验方法。本文特别介绍了在该模型设计过程中... 本文着重介绍了应用于BESIII数据获取系统读出分支的读出模型的设计。文中简要介绍了北京谱仪系统及其数据获取系统对读出子系统的要求 ,并详细介绍了该模型的系统结构、数据处理流程和测试实验方法。本文特别介绍了在该模型设计过程中要实现的关键技术 ,最后对测试结果进行了分析和讨论。该模型最终实现了从电子学插件将数据读出、完成数据格式转换以及通过局域网将数据发送到读出计算机等功能。 展开更多
关键词 机箱 数据获取 VME 插件 模型 数据格式转换 局域网 数据处理流程 子系统 过程
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BESIII MDC数据处理系统
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作者 刘春燕 贾卢魁 +10 位作者 毛泽普 马想 邓子艳 王纪科 刘怀民 伍灵慧 李卫东 吴智 罗涛 曹学香 毛虎 《核电子学与探测技术》 CAS CSCD 北大核心 2012年第1期25-31,共7页
北京谱仪III(BESIII)是北京正负电子对撞机II(BEPCII)上的一台大型通用磁谱仪,用于τ-粲物理实验研究。主漂移室(MDC)是BESIII上的主要探测器之一,用于测量带电粒子的位置,动量和粒子类型的鉴别。论文主要介绍了BESIII MDC事例重建系统... 北京谱仪III(BESIII)是北京正负电子对撞机II(BEPCII)上的一台大型通用磁谱仪,用于τ-粲物理实验研究。主漂移室(MDC)是BESIII上的主要探测器之一,用于测量带电粒子的位置,动量和粒子类型的鉴别。论文主要介绍了BESIII MDC事例重建系统,其中包括T0的计算,径迹重建和径迹拟合,数据离线刻度,dE/dx的重建和刻度等软件的原理、结构以及各软件包的主要性能。 展开更多
关键词 离线数据处理 besiii漂移室 事例重建 离线刻度
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BESIII上ψ(3686)→X(pp)φ衰变的Monte Carlo研究
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作者 蒋兴雨 喻纯旭 《南开大学学报(自然科学版)》 CAS CSCD 北大核心 2020年第5期62-67,共6页
在BOSS软件框架下,利用BESⅢ实验组产生的4(3686)单举Monte Carlo数据样本通过对衰变过程ψ(3686)→X(pp^-)φ的研究,分析了pp^-的质量阈值增强X(pp^-)在BESⅢ探测器上实现测量的可能性.以无信号事例的单举ψ(3686)样本为背景样本,以纯... 在BOSS软件框架下,利用BESⅢ实验组产生的4(3686)单举Monte Carlo数据样本通过对衰变过程ψ(3686)→X(pp^-)φ的研究,分析了pp^-的质量阈值增强X(pp^-)在BESⅢ探测器上实现测量的可能性.以无信号事例的单举ψ(3686)样本为背景样本,以纯信号Monte Carlo事例为信号样本,控制信号事例,假设观测到质量阈值增强的信号统计显著水平为3σ和5σ,在这两种情况下,分别给出了所研究过程的衰变分支比. 展开更多
关键词 besiii探测器 ψ(3686)衰变 X(pp^-) Monte Carlo模拟
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BESIII上的重子形状因子(英文)
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作者 王雅迪 《中国科学技术大学学报》 CAS CSCD 北大核心 2016年第4期337-342,共6页
利用在2011~2013年BEPCII对撞机上的BESIII探测器收集的数据,测量了e^+e^-→pp在2.232 4~3.671 0GeV之间12个质心系能量点的截面.期待利用在2014年和2015年收集的更大的e^+e^-扫描数据样本做更进一步测量.通过标记和不标记初态辐射光子... 利用在2011~2013年BEPCII对撞机上的BESIII探测器收集的数据,测量了e^+e^-→pp在2.232 4~3.671 0GeV之间12个质心系能量点的截面.期待利用在2014年和2015年收集的更大的e^+e^-扫描数据样本做更进一步测量.通过标记和不标记初态辐射光子的方法,对pp珚形状因子进行了测量.利用BESIII的优良探测器表现,利用标记和不标记初态辐射光子的方法,对nn珔形状因子的测量进行了可行性研究.同时也一并报道了ΛΛ的形状因子的初步但不符合理论预期的结果,及利用在e^+e^-→Λ_cΛ_c阈值上收集的数据的预期.也期望BESIII能对其他超子的形状因子进行测量. 展开更多
关键词 形状因子 重子 超子 besiii
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A Prototype of the Read-out Subsystem of the BESIII DAQ Based on PowerPC
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作者 陶宁 初元萍 +1 位作者 金革 赵京伟 《Plasma Science and Technology》 SCIE EI CAS CSCD 2005年第5期3065-3068,共4页
This article describes the prototype of the read-out subsystem which will be subject to the BESIII data acquisition system. According to the purpose of the BESIII, the event rate will be about 4000 Hz and the data rat... This article describes the prototype of the read-out subsystem which will be subject to the BESIII data acquisition system. According to the purpose of the BESIII, the event rate will be about 4000 Hz and the data rate up to 50 Mbytes/sec after Level 1 trigger. The read-out subsystem consists of some read-out crates and a read-out computer whose function is to initialize the hardware, to collect the event data from the front-end electronics after Level 1 trigger, to transfer data fragments to the computer in online form through two levels of computer pre-processing and high-speed network transmission. In this model, the crate level read-out implementation is based on the commercial single board computer MVME5100 running the VxWorks operating system. The article outlines the structure of the crate level testing platform of hardware and software. It puts emphasis on the framework of the read-out test model, data process flow and test method at crate level. Especially, it enumerates the key technologies in the process of design and analyses the test results. In addition, results which summarize the performance of the single board computer from the data transferring aspects will be presented. 展开更多
关键词 besiii DAQ readout system single board computer VMEBUS DMA transfer
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Study of BESIII trigger efficiencies with the 2018 J/ψ data 被引量:36
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作者 M.Ablikim M.N.Achasov +501 位作者 P.Adlarson S.Ahmed M.Albrecht R.Aliberti A.Amoroso M.R.An Q.An X.H.Bai Y.Bai O.Bakina R.Baldini Ferroli I.Balossino Y.Ban K.Begzsuren N.Berger M.Bertani D.Bettoni F.Bianchi J.Bloms A.Bortone I.Boyko R.A.Briere H.Cai X.Cai A.Calcaterra G.F.Cao N.Cao S.A.Cetin J.F.Chang W.L.Chang G.Chelkov D.Y.Chen G.Chen H.S.Chen M.L.Chen S.J.Chen X.R.Chen Y.B.Chen Z.J Chen W.S.Cheng G.Cibinetto F.Cossio X.F.Cui H.L.Dai X.C.Dai A.Dbeyssi R.E.de Boer D.Dedovich Z.Y.Deng A.Denig I.Denysenko M.Destefanis F.De Mori Y.Ding C.Dong J.Dong L.Y.Dong M.Y.Dong X.Dong S.X.Du Y.L.Fan J.Fang S.S.Fang Y.Fang R.Farinelli L.Fava F.Feldbauer G.Felici C.Q.Feng J.H.Feng M.Fritsch C.D.Fu Y.Gao Y.Gao Y.Gao Y.G.Gao I.Garzia P.T.Ge C.Geng E.M.Gersabeck A Gilman K.Goetzen L.Gong W.X.Gong W.Gradl M.Greco L.M.Gu M.H.Gu S.Gu Y.T.Gu C.Y Guan A.Q.Guo L.B.Guo R.P.Guo Y.P.Guo A.Guskov T.T.Han W.Y.Han X.Q.Hao F.A.Harris H Hüsken K.L.He F.H.Heinsius C.H.Heinz T.Held Y.K.Heng C.Herold M.Himmelreich T.Holtmann Y.R.Hou Z.L.Hou H.M.Hu J.F.Hu T.Hu Y.Hu G.S.Huang L.Q.Huang X.T.Huang Y.P.Huang Z.Huang T.Hussain W.Ikegami Andersson W.Imoehl M.Irshad S.Jaeger S.Janchiv Q.Ji Q.P.Ji X.B.Ji X.L.Ji H.B.Jiang X.S.Jiang J.B.Jiao Z.Jiao S.Jin Y.Jin T.Johansson N.Kalantar-Nayestanaki X.S.Kang R.Kappert M.Kavatsyuk B.C.Ke I.K.Keshk A.Khoukaz P.Kiese R.Kiuchi R.Kliemt L.Koch O.B.Kolcu B.Kopf M.Kuemmel M.Kuessner A.Kupsc M.G.Kurth W.Kühn J.J.Lane J.S.Lange P.Larin A.Lavania L.Lavezzi Z.H.Lei H.Leithoff M.Lellmann T.Lenz C.Li C.H.Li Cheng Li D.M.Li F.Li G.Li H.Li H.Li H.B.Li H.J.Li J.L.Li J.Q.Li J.S.Li Ke Li L.K.Li Lei Li P.R.Li S.Y.Li W.D.Li W.G.Li X.H.Li X.L.Li Z.Y.Li H.Liang H.Liang H.Liang Y.F.Liang Y.T.Liang L.Z.Liao J.Libby C.X.Lin B.J.Liu C.X.Liu D.Liu F.H.Liu Fang Liu Feng Liu H.B.Liu H.M.Liu Huanhuan Liu Huihui Liu J.B.Liu J.L.Liu J.Y.Liu K.Liu K.Y.Liu Ke Liu L.Liu M.H.Liu P.L.Liu Q.Liu Q.Liu S.B.Liu Shuai Liu T.Liu W.M.Liu X.Liu Y.Liu Y.B.Liu Z.A.Liu Z.Q.Liu X.C.Lou F.X.Lu H.J.Lu J.D.Lu J.G.Lu X.L.Lu Y.Lu Y.P.Lu C.L.Luo M.X.Luo b P.W.Luo T.Luo X.L.Luo S.Lusso X.R.Lyu F.C.Ma H.L.Ma L.L.Ma M.M.Ma Q.M.Ma R.Q.Ma R.T.Ma X.X.Ma X.Y.Ma F.E.Maas M.Maggiora S.Maldaner S.Malde Q.A.Malik A.Mangoni Y.J.Mao Z.P.Mao S.Marcello Z.X.Meng J.G.Messchendorp G.Mezzadri T.J.Min R.E.Mitchell X.H.Mo Y.J.Mo N.Yu.Muchnoi H.Muramatsu S.Nakhoul Y.Nefedov F.Nerling I.B.Nikolaev Z.Ning S.Nisar S.L.Olsen Q.Ouyang S.Pacetti X.Pan Y.Pan A.Pathak P.Patteri M.Pelizaeus H.P.Peng K.Peters J.Pettersson J.L.Ping R.G.Ping R.Poling V.Prasad H.Qi H.R.Qi K.H.Qi M.Qi T.Y.Qi T.Y.Qi S.Qian W.-B.Qian Z.Qian C.F.Qiao L.Q.Qin X.S.Qin Z.H.Qin J.F.Qiu S.Q.Qu K.H.Rashid K.Ravindran C.F.Redmer A.Rivetti V.Rodin M.Rolo G.Rong Ch.Rosner M.Rump H.S.Sang A.Sarantsev Y.Schelhaas C.Schnier K.Schoenning M.Scodeggio D.C.Shan W.Shan X.Y.Shan J.F.Shangguan M.Shao C.P.Shen P.X.Shen X.Y.Shen H.C.Shi R.S.Shi X.Shi X.D Shi W.M.Song Y.X.Song S.Sosio S.Spataro K.X.Su P.P.Su F.F.Sui G.X.Sun H.K.Sun J.F.Sun L.Sun S.S.Sun T.Sun W.Y.Sun X Sun Y.J.Sun Y.K.Sun Y.Z.Sun Z.T.Sun Y.H.Tan Y.X.Tan C.J.Tang G.Y.Tang J.Tang J.X.Teng V.Thoren I.Uman B.Wang C.W.Wang D.Y.Wang H.J.Wang H.P.Wang K.Wang L.L.Wang M.Wang M.Z.Wang Meng Wang W.Wang W.H.Wang W.P.Wang X.Wang X.F.Wang X.L.Wang Y.Wang Y.D.Wang Y.F.Wang Y.Q.Wang Y.Y.Wang Z.Wang Z.Y.Wang Ziyi Wang Zongyuan Wang D.H.Wei P.Weidenkaff F.Weidner S.P.Wen D.J.White U.Wiedner G.Wilkinson M.Wolke L.Wollenberg J.F.Wu L.H.Wu L.J.Wu X.Wu Z.Wu L.Xia H.Xiao S.Y.Xiao Z.J.Xiao X.H.Xie Y.G.Xie Y.H.Xie T.Y.Xing G.F.Xu Q.J.Xu W.Xu X.P.Xu F.Yan L.Yan W.B.Yan W.C.Yan Xu Yan H.J.Yang H.X.Yang L.Yang S.L.Yang Y.X.Yang Yifan Yang Zhi Yang M.Ye M.H.Ye J.H.Yin Z.Y.You B.X.Yu C.X.Yu G.Yu J.S.Yu T.Yu C.Z.Yuan L.Yuan X.Q.Yuan Y.Yuan Z.Y.Yuan C.X.Yue A.Yuncu A.A.Zafar Y.Zeng B.X.Zhang Guangyi Zhang H.Zhang H.H.Zhang H.Y.Zhang J.J.Zhang J.L.Zhang J.Q.Zhang J.W.Zhang J.Y.Zhang J.Z.Zhang Jianyu Zhang Jiawei Zhang L.Q.Zhang Lei Zhang S.Zhang S.F.Zhang Shulei Zhang X.D.Zhang X.Y.Zhang Y.Zhang Y.H.Zhang Y.T.Zhang Yan Zhang Yao Zhang Yi Zhang Z.H.Zhang Z.Y.Zhang G.Zhao J.Zhao J.Y.Zhao J.Z.Zhao Lei Zhao Ling Zhao M.G.Zhao Q.Zhao S.J.Zhao Y.B.Zhao Y.X.Zhao Z.G.Zhao A.Zhemchugov B.Zheng J.P.Zheng Y.Zheng Y.H.Zheng B.Zhong C.Zhong L.P.Zhou Q.Zhou X.Zhou X.K.Zhou X.R.Zhou A.N.Zhu J.Zhu K.Zhu K.J.Zhu S.H.Zhu T.J.Zhu W.J.Zhu W.J.Zhu Y.C.Zhu Z.A.Zhu B.S.Zou J.H.Zou 《Chinese Physics C》 SCIE CAS CSCD 2021年第2期48-55,共8页
Using a dedicated data sample taken in 2018 on the J/ψpeak,we perform a detailed study of the trigger efficiencies of the BESIII detector.The efficiencies are determined from three representative physics processes,na... Using a dedicated data sample taken in 2018 on the J/ψpeak,we perform a detailed study of the trigger efficiencies of the BESIII detector.The efficiencies are determined from three representative physics processes,namely Bhabha scattering,dimuon production and generic hadronic events with charged particles.The combined efficiency of all active triggers approaches 100%in most cases,with uncertainties small enough not to affect most physics analyses. 展开更多
关键词 besiii trigger efficiency Bhabha dimuon hadronic events
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BESIII测量X_(c J)→ηη’的蒙特卡罗研究
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作者 肖浩 姬清平 +1 位作者 王至勇 郑波 《湖南科技大学学报(自然科学版)》 CAS 北大核心 2016年第4期108-113,共6页
基于BOSS软件框架,利用BESIII合作组产生的400 M单举ψ(3686)事例,研究在BESIII探测器上实现测量到X_(c J)→ηη’分支比的可能性.以无信号事例的单举ψ(3686)样本为背景样本,以纯信号蒙特卡罗事例为信号样本,控制信号事例,在分别假设... 基于BOSS软件框架,利用BESIII合作组产生的400 M单举ψ(3686)事例,研究在BESIII探测器上实现测量到X_(c J)→ηη’分支比的可能性.以无信号事例的单举ψ(3686)样本为背景样本,以纯信号蒙特卡罗事例为信号样本,控制信号事例,在分别假设观测到X_(c J)→ηη’衰变过程信号显著水平为3σ和5σ的情况下,得到该过程对应的分支比. 展开更多
关键词 XcJ衰变 besiii探测器 XcJ→ηη’测量 蒙特卡罗研究
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Aging effect in the BESIII drift chamber 被引量:1
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作者 董明义 修青磊 +9 位作者 伍灵慧 吴智 秦中华 沈品 安芬芬 鞠旭东 刘义 朱凯 欧阳群 陈元柏 《Chinese Physics C》 SCIE CAS CSCD 2016年第1期65-68,共4页
As the main tracking detector of BESIII, the drift chamber provides accurate measurements of the position and the momentum of the charged particles produced in e+e- collisions at BEPCII. After six years of operation,... As the main tracking detector of BESIII, the drift chamber provides accurate measurements of the position and the momentum of the charged particles produced in e+e- collisions at BEPCII. After six years of operation, the drift chamber is suffering from aging problems due to huge beam-related background. The gains of the cells in the first ten layers show an obvious decrease, reaching a maximum decrease of about 29% for the first layer cells. Two calculation methods for the gain change (Bhabha events and accumulated charges with 0.3% aging ratio for inner chamber cells) give almost the same results. For the Malter effect encountered by the inner drift chamber in January 2012, about 0.2% water vapor was added to the MDC gas mixture to solve this cathode aging problem. These results provide an important reference for MDC operating high voltage settings and the upgrade of the inner drift chamber. 展开更多
关键词 besiii drift chamber hit rate AGING accumulated charges Malter effect
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Measurements of the center-of-mass energies of e^(+)e^(-)collisions at BESIII 被引量:1
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作者 M.Ablikim M.N.Achasov +511 位作者 P.Adlarson S.Ahmed M.Albrecht R.Aliberti A.Amoroso M.R.An Q.An X.H.Bai Y.Bai O.Bakina R.Baldini Ferroli I.Balossino Y.Ban K.Begzsuren N.Berger M.Bertani D.Bettoni F.Bianchi J.Bloms A.Bortone I.Boyko R.A.Briere H.Cai X.Cai A.Calcaterra G.F.Cao N.Cao S.A.Cetin J.F.Chang W.L.Chang G.Chelkov D.Y.Chen G.Chen H.S.Chen M.L.Chen S.J.Chen X.R.Chen Y.B.Chen Z.J.Chen W.S.Cheng G.Cibinetto F.Cossio X.F.Cui H.L.Dai X.C.Dai A.Dbeyssi R.E.de Boer D.Dedovich Z.Y.Deng A.Denig I.Denysenko M.Destefanis F.De Mori Y.Ding C.Dong J.Dong L.Y.Dong M.Y.Dong X.Dong S.X.Du Y.L.Fan J.Fang S.S.Fang Y.Fang R.Farinelli L.Fava F.Feldbauer G.Felici C.Q.Feng J.H.Feng M.Fritsch C.D.Fu Y.Gao Y.Gao Y.Gao Y.G.Gao I.Garzia P.T.Ge C.Geng E.M.Gersabeck A Gilman K.Goetzen L.Gong W.X.Gong W.Gradl M.Greco L.M.Gu M.H.Gu Y.T.Gu C.Y Guan A.Q.Guo L.B.Guo R.P.Guo Y.P.Guo A.Guskov T.T.Han W.Y.Han X.Q.Hao F.A.Harris K.L.He F.H.Heinsius C.H.Heinz T.Held Y.K.Heng C.Herold M.Himmelreich T.Holtmann G.Y.Hou Y.R.Hou Z.L.Hou H.M.Hu J.F.Hu T.Hu Y.Hu G.S.Huang L.Q.Huang X.T.Huang Y.P.Huang Z.Huang T.Hussain N Husken W.Ikegami Andersson W.Imoehl M.Irshad S.Jaeger S.Janchiv Q.Ji Q.P.Ji X.B.Ji X.L.Ji Y.Y.Ji H.B.Jiang X.S.Jiang J.B.Jiao Z.Jiao S.Jin Y.Jin M.Q.Jing T.Johansson N.Kalantar-Nayestanaki X.S.Kang R.Kappert M.Kavatsyuk B.C.Ke I.K.Keshk A.Khoukaz P.Kiese R.Kiuchi R.Kliemt L.Koch O.B.Kolcu B.Kopf M.Kuemmel M.Kuessner A.Kupsc M.G.Kurth W.Kuhn J.J.Lane J.S.Lange P.Larin A.Lavania L.Lavezzi Z.H.Lei H.Leithoff M.Lellmann T.Lenz C.Li C.H.Li Cheng Li D.M.Li F.Li G.Li H.Li H.Li H.B.Li H.J.Li J.L.Li J.Q.Li J.S.Li Ke Li L.K.Li Lei Li P.R.Li S.Y.Li W.D.Li W.G.Li X.H.Li X.L.Li Xiaoyu Li Z.Y.Li H.Liang H.Liang H.Liang Y.F.Liang Y.T.Liang G.R.Liao L. Z. Liao J.Libby C.X.Lin B.J.Liu C.X.Liu D.Liu F.H.Liu Fang Liu Feng Liu H.B.Liu H.M.Liu Huanhuan Liu Huihui Liu J.B.Liu J.L.Liu J.Y.Liu K.Liu K.Y.Liu L.Liu M.H.Liu P.L.Liu Q.Liu Q.Liu S.B.Liu Shuai Liu T.Liu W.M.Liu X.Liu Y.Liu Y.B.Liu Z.A.Liu Z.Q.Liu X.C.Lou F.X.Lu H.J.Lu J.D.Lu J.G.Lu X.L.Lu Y.Lu Y.P.Lu C.L.Luo M.X.Luo P.W.Luo T.Luo X.L.Luo X.R.Lyu F.C.Ma H.L.Ma L.L.Ma M.M.Ma Q.M.Ma R.Q.Ma R.T.Ma X.X.Ma X.Y.Ma F.E.Maas M.Maggiora S.Maldaner S.Malde Q.A.Malik A.Mangoni Y.J.Mao Z.P.Mao S.Marcello Z.X.Meng J.G.Messchendorp G.Mezzadri T.J.Min R.E.Mitchell X.H.Mo N.Yu.Muchnoi H.Muramatsu S.Nakhoul Y.Nefedov F.Nerling I.B.Nikolaev Z.Ning S.Nisar S.L.Olsen Q.Ouyang S.Pacetti X.Pan Y.Pan A.Pathak A.Pathak P.Patteri M.Pelizaeus H.P.Peng K.Peters J.Pettersson J.L.Ping R.G.Ping S.Pogodin R.Poling V.Prasad H.Qi H.R.Qi K.H.Qi M.Qi T.Y.Qi S.Qian W.B.Qian Z.Qian C.F.Qiao L.Q.Qin X.P.Qin X.S.Qin Z.H.Qin J.F.Qiu S.Q.Qu K.H.Rashid K.Ravindran C.F.Redmer A.Rivetti V.Rodin M.Rolo G.Rong Ch.Rosner M.Rump H.S.Sang A.Sarantsev Y.Schelhaas C.Schnier K.Schoenning M.Scodeggio D.C.Shan W.Shan X.Y.Shan J.F.Shangguan M.Shao C.P.Shen H.F.Shen P.X.Shen X.Y.Shen H.C.Shi R.S.Shi X.Shi X.D Shi J.J.Song W.M.Song Y.X.Song S.Sosio S.Spataro K.X.Su P.P.Su F.F.Sui G.X.Sun H.K.Sun J.F.Sun L.Sun S.S.Sun T.Sun W.Y.Sun W.Y.Sun X Sun Y.J.Sun Y.K.Sun Y.Z.Sun Z.T.Sun Y.H.Tan Y.X.Tan C.J.Tang G.Y.Tang J.Tang J.X.Teng V.Thoren W.H.Tian Y.T.Tian I.Uman B.Wang C.W.Wang D.Y.Wang H.J.Wang H.P.Wang K.Wang L.L.Wang M.Wang M.Z.Wang Meng Wang W.Wang W.H.Wang W.P.Wang X.Wang X.F.Wang X.L.Wang Y.Wang Y.Wang Y.D.Wang Y.F.Wang Y.Q.Wang Y.Y.Wang Z.Wang Z.Y.Wang Ziyi Wang Zongyuan Wang D.H.Wei F.Weidner S.P.Wen D.J.White U.Wiedner G.Wilkinson M.Wolke L.Wollenberg J.F.Wu L.H.Wu L.J.Wu X.Wu Z.Wu L.Xia H.Xiao S.Y.Xiao Z.J.Xiao X.H.Xie Y.G.Xie Y.H.Xie T.Y.Xing G.F.Xu Q.J.Xu W.Xu X.P.Xu Y.C.Xu F.Yan L.Yan W.B.Yan W.C.Yan Xu Yan H.J.Yang H.X.Yang L.Yang S.L.Yang Y.X.Yang Yifan Yang Zhi Yang M.Ye M.H.Ye J.H.Yin Z.Y.You B.X.Yu C.X.Yu G.Yu J.S.Yu T.Yu C. Z. Yuan L.Yuan X.Q.Yuan Y.Yuan Z.Y.Yuan C.X.Yue A.A.Zafar X.Zeng Zeng Y.Zeng A.Q.Zhang B.X.Zhang Guangyi Zhang H.Zhang H.H.Zhang H.H.Zhang H.Y.Zhang J.J.Zhang J.L.Zhang J.Q.Zhang J.W.Zhang J.Y.Zhang J.Z.Zhang Jianyu Zhang Jiawei Zhang L.M.Zhang L.Q.Zhang Lei Zhang S.Zhang S.F.Zhang Shulei Zhang X.D.Zhang X.Y.Zhang Y.Zhang Y.T.Zhang Y.H.Zhang Yan Zhang Yao Zhang Z.Y.Zhang G.Zhao J.Zhao J.Y.Zhao J.Z.Zhao Lei Zhao Ling Zhao M.G.Zhao Q.Zhao S.J.Zhao Y.B.Zhao Y.X.Zhao Z.G.Zhao A.Zhemchugov B.Zheng J.P.Zheng Y.H.Zheng B.Zhong C.Zhong L.P.Zhou Q.Zhou X.Zhou X.K.Zhou X.R.Zhou X.Y.Zhou A.N.Zhu J.Zhu K.Zhu K.J.Zhu S.H.Zhu T.J.Zhu W.J.Zhu W.J.Zhu Y.C.Zhu Z.A.Zhu B.S.Zou J.H.Zou 《Chinese Physics C》 SCIE CAS CSCD 2021年第10期7-15,共9页
During the 2016-17 and 2018-19 running periods,the BESIII experiment collected 7.5 fb of e^(+)e^(-)collision data at center-of-mass energies ranging from 4.13 to 4.44 GeV.These data samples are primarily used for the ... During the 2016-17 and 2018-19 running periods,the BESIII experiment collected 7.5 fb of e^(+)e^(-)collision data at center-of-mass energies ranging from 4.13 to 4.44 GeV.These data samples are primarily used for the study of excited charmonium and charmoniumlike states.By analyzing the di-muon process e^(+)e^(-)→(γISR=FSR)μ^(+)μ^(-),we measure the center-of-mass energies of the data samples with a precision of 0.6 MeV.Through a run-by-run study,we find that the center-of-mass energies were stable throughout most of the data-collection period. 展开更多
关键词 center-of-mass ENERGY e^(+)e^(-) ANNIHILATION besiii
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The offline data quality monitoring of the BESIII end cap TOF system 被引量:1
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作者 Ming-Ming Ma Jing-Yi Liu +9 位作者 Shuo-Pin Wen Sheng-Sen Sun Chun-Xiu Liu Yong-Zhao Sun Zi-Yan Deng Ye Yuan Hong-Liang Dai Zhi Wu Yue-Kun Heng Huai-Min Liu 《Radiation Detection Technology and Methods》 CSCD 2019年第4期5-11,共7页
Purpose The end cap time of flight(TOF)at Beijing spectrometer was upgraded with multi-gap resistive plate chamber technology in order to improve the particle identification capability in 2015.The offline data quality... Purpose The end cap time of flight(TOF)at Beijing spectrometer was upgraded with multi-gap resistive plate chamber technology in order to improve the particle identification capability in 2015.The offline data quality monitoring is a critical aspect of the data processing chain aiming at providing data with good quality for physics analyses.Methods An offline data quality monitoring tool for upgraded end cap TOF has been developed to provide feedback about the functioning and performance of detector hardware and data processing chain.Results Detector information and reconstructed time-of-flight characteristics of charged tracks are filled into plots using full Bhabha events reconstruction results,and then,these plots are used to assess the operational conditions of the detector and the quality of the data by the experts.Conclusion This paper is describing the design and the content of performance of the offline data quality monitoring of end cap TOF and the data quality performance achieved during last 2 years’physical data taking. 展开更多
关键词 Offline data quality monitoring Time of flight MRPC besiii
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Number of J/ψ events at BESIII 被引量:1
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作者 M.Ablikim M.N.Achasov +516 位作者 P.Adlarson S.Ahmed M.Albrecht R.Aliberti A.Amoroso M.R.An Q.An X.H.Bai Y.Bai O.Bakina R.Baldini Ferroli I.Balossino Y.Ban K.Begzsuren N.Berger M.Bertani D.Bettoni F.Bianchi J.Bloms A.Bortone I.Boyko R.A.Briere H.Cai X.Cai A.Calcaterra G.F.Cao N.Cao S.A.Cetin J.F.Chang W.L.Chang G.Chelkov G.Chen H.S.Chen M.L.Chen S.J.Chen X.R.Chen Y.B.Chen Z.J.Chen W.S.Cheng G.Cibinetto F.Cossio J.J.Cui X.F.Cu H.L.Dai J.P.Dai X.C.Dai A.Dbeyssi R.E.de Boer D.Dedovich Z.Y.Deng A.Denig I.Denysenko M.Destefanis F.De Mori Y.Ding C.Dong J.Dong L.Y.Dong M.Y.Dong X.Dong S.X.Du P.Egorov Y.L.Fan J.Fang S.S.Fang Y.Fang R.Farinelli L.Fava F.Feldbauer G.Felici C.Q.Feng J.H.Feng M.Fritsch C.D.Fu Y.Gao Y.Gao I.Garzia P.T.Ge C.Geng E.M.Gersabeck A Gilman K.Goetzen L.Gong W.X.Gong W.Gradl M.Greco L.M.Gu M.H.Gu C..Y.Guan A.Q.Guo A.Q.Guo L.B.Guo R.P.Guo Y.P.Guo A.Guskov T.T.Han W.Y.Han X.Q.Hao F.A.Harris K.K.He K.L.He F.H.Heinsius C.H.Heinz Y.K.Heng C.Herold M.Himmelreich T.Holtmann G.Y.Hou Y.R.Hou Z.L.Hou H.M.Hu J.F.Hu T.Hu Y.Hu G.S.Huang L.Q.Huang X.T.Huang Y.P.Huang Z.Huang T.Hussain N Husken W.Ikegami Andersson W.Imoehl M.Irshad S.Jaeger S.Janchiv Q.Ji Q.P.Ji X.B.Ji X.L.Ji Y.Y.Ji H.B.Jiang X.S.Jiang J.B.Jiao Z.Jiao S.Jin Y.Jin M.Q.Jing T.Johansson N.Kalantar-Nayestanaki X.S.Kang R.Kappert M.Kavatsyuk B.C.Ke I.K.Keshk A.Khoukaz P.Kiese R.Kiuchi R.Kliemt L.Koch O.B.Kolcu B.Kopf M.Kuemmel M.Kuessner A.Kupsc M.G.Kurth W.Kuhn J.J.Lane J.S.Lange P.Larin A.Lavania L.Lavezzi Z.H.Lei H.Leithoff M.Lellmann T.Lenz C.Li C.H.Li Cheng Li D.M.Li F.Li G.Li H.Li H.Li H.B.Li H.J.Li H.N.Li J.L.Li J.Q.Li J.S.Li Ke Li L.K.Li Lei Li P.R.Li S.Y.Li W.D.Li W.G.Li X.H.Li X.L.Li Xiaoyu Li Z.Y.Li H.Liang H.Liang H.Liang Y.F.Liang Y.T.Liang G.R.Liao L.Z.Liao J.Libby A.Limphirat C.X.Lin D.X.Lin T.Lin B.J.Liu C.X.Liu D.Liu F.H.Liu Fang Liu Feng Liu G.M.Liu H.M.Liu Huanhuan Liu Huihui Liu J.B.Liu J.L.Liu J.Y.Liu K.Liu K.Y.Liu Ke Liu L.Liu M.H.Liu P.L.Liu Q.Liu Q.Liu S.B.Liu T.Liu T.Liu W.M.Liu X.Liu Y.Liu Y.B.Liu Z.A.Liu Z.Q.Liu X.C.Lou F.X.Lu H.J.Lu J.D.Lu J.G.Lu X.L.Lu Y.Lu Y.P.Lu C.L.Luo M.X.Luo P.W.Luo T.Luo X.L.Luo X.R.Lyu F.C.Ma H.L.Ma L.L.Ma M.M.Ma Q.M.Ma R.Q.Ma R.T.Ma X.X.Ma X.Y.Ma Y.Ma F.E.Maas M.Maggiora S.Maldaner S.Malde Q.A.Malik A.Mangoni Y.J.Mao Z.P.Mao S.Marcello Z.X.Meng J.G.Messchendorp G.Mezzadri T.J.Min R.E.Mitchell X.H.Mo N.Yu.Muchnoi H.Muramatsu S.Nakhoul Y.Nefedov F.Nerling I.B.Nikolaev Z.Ning S.Nisar S.L.Olsen Q.Ouyang S.Pacetti X.Pan Y.Pan A.Pathak A.Pathak P.Patteri M.Pelizaeus H.P.Peng K.Peters J.Pettersson J.L.Ping R.G.Ping S.Plura S.Pogodin R.Poling V.Prasad H.Qi H.R.Qi M.Qi T.Y.Qi S.Qian W.B.Qian Z.Qian C.F.Qiao J.J.Qin L.Q.Qin X.P.Qi X.S.Qin Z.H.Qin J.F.Qiu S.Q.Qu K.H.Rashid K.Ravindran C.F.Redmer A.Rivetti V.Rodin M.Rolo G.Rong Ch.Rosner M.Rump H.S.Sang A.Sarantsev Y.Schelhaas C.Schnier K.Schoenning M.Scodeggio W.Shan X.Y.Shan J.F.Shangguan M.Shao C.P.Shen H.F.Shen X.Y.Shen H.C.Shi R.S.Shi X.Shi X.D Shi J.J.Song W.M.Song Y.X.Song S.Sosio S.Spataro F.Stieler K.X.Su P.P.Su G.X.Sun H.K.Sun J.F.Sun L.Sun S.S.Sun T.Sun W.Y.Sun X.Sun Y.J.Sun Y.Z.Sun Z.T.Sun Y.H.Tan Y.X.Tan C.J.Tang G.Y.Tang J.Tang Q.T.Tao J.X.Teng V.Thoren W.H.Tian Y.T.Tian I.Uman B.Wang C.W.Wang D.Y.Wang H.J.Wang H.P.Wang K.Wang L.L.Wang M.Wang M.Z.Wang Meng Wang S.Wang W.Wang W.H.Wang W.P.Wang X.Wang X.F.Wang X.L.Wang Y.Wang Y.D.Wang Y.F.Wang Y.Q.Wang Y.Y.Wang Z.Wang Z.Y.Wang Ziyi Wang Zongyuan Wang D.H.Wei F.Weidner S.P.Wen D.J.White U.Wiedner G.Wilkinson M.Wolke L.Wollenberg J.F.Wu L.H.Wu L.J.Wu X.Wu X.H.Wu Z.Wu L.Xia T.Xiang H.Xiao S.Y.Xiao Z.J.Xiao X.H.Xie Y.G.Xie Y.H.Xi T.Y.Xing C.J.Xu G.F.Xu Q.J.Xu W.Xu X.P.Xu Y.C.Xu F.Yan L.Yan W.B.Yan W.C.Yan H.J.Yang H.X.Yang L.Yang S.L.Yang Y.X.Yang Yifan Yang Zhi Yang M.Ye M.H.Ye J.H.Yin Z.Y.You B.X.Yu C.X.Y G.Yu J.S.Yu T.Yu C.Z.Yuan L.Yuan Y.Yuan Z.Y.Yuan C.X.Yue A.A.Zafar X.Zeng Zeng Y.Zeng A.Q.Zhang B.X.Zhang G.Y.Zhang H.Zhang H.H.Zhang H.H.Zhang H.Y.Zhang J.L.Zhang J.Q.Zhang J.W.Zhang J.Y.Zhang J.Z.Zhang Jianyu Zhang Jiawei Zhang L.M.Zhang L.Q.Zhang Lei Zhang S.Zhang S.F.Zhang Shulei Zhang X.D.Zhang X.M.Zhang X.Y.Zhang Y.Zhang Y.T.Zhang Y.H.Zhang Yan Zhang Yao Zhang Z.Y.Zhang G.Zhao J.Zhao J.Y.Zhao J.Z.Zhao Lei Zhao Ling Zhao M.G.Zhao Q.Zhao S.J.Zhao Y.B.Zhao Y.X.Zhao Z.G.Zhao A.Zhemchugov B.Zheng J.P.Zheng Y.H.Zheng B.Zhong C.Zhong L.P.Zhou Q.Zhou X.Zhou X.K.Zhou X.R.Zhou X.Y.Zhou A.N.Zhu J.Zhu K.Zhu K.J.Zhu S.H.Zhu T.J.Zhu W.J.Zhu W.J.Zhu Y.C.Zhu Z.A.Zhu B.S.Zou J.H.Zou 《Chinese Physics C》 SCIE CAS CSCD 2022年第7期74-84,共11页
Using inclusive decays of J/ψ aprecise determination of the number of J/ψ events collected with the BESIII detector was performed.For the two data sets taken in 2009 and 2012,the numbers of J/ψ events were recalcul... Using inclusive decays of J/ψ aprecise determination of the number of J/ψ events collected with the BESIII detector was performed.For the two data sets taken in 2009 and 2012,the numbers of J/ψ events were recalculated to be(224.0±1.3)×10^(6) and(1088.5±4.4)×10^(6),respectively;these numbers are in good agreement with the previous measurements. For the J/ψ sample taken in 2017-2019,the number of events was determined to be(8774.0±39.4)×10^(6).The total number of J/ψ events collected with the BESIII detector was determined to be(10087±44)×10^(6),where the uncertainty is dominated by systematic effects,and the statistical uncertainty is negligible. 展开更多
关键词 number of J/ψevents besiii detector inclusive J/ψdecays
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Visualization for physics analysis improvement and applications in BESIII 被引量:1
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作者 Zhi-Jun Li Ming-Kuan Yuan +6 位作者 Yun-Xuan Song Yan-Gu Li Jing-Shu Li Sheng-Sen Sun Xiao-Long Wang Zheng-Yun You Ya-Jun Mao 《Frontiers of physics》 CSCD 2024年第6期43-52,共10页
Modern particle physics experiments usually rely on highly complex and large-scale spectrometer devices.In high energy physics experiments,visualization helps detector design,data quality monitoring,offline data proce... Modern particle physics experiments usually rely on highly complex and large-scale spectrometer devices.In high energy physics experiments,visualization helps detector design,data quality monitoring,offline data processing,and has great potential for improving physics analysis.In addi-tion to the traditional physics data analysis based on statistical methods,visualization provides unique intuitive advantages in searching for rare signal events and reducing background noises.By applying the event display tool to several physics analyses in the BESIII experiment,we demonstrate that visualization can benefit potential physics discovery and improve the signal significance.With the development of modern visual-ization techniques,it is expected to play a more important role in future data processing and physics analysis of particle physics experiments. 展开更多
关键词 particle physics experiments VISUALIZATION physics analysis besiii
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Study of cluster reconstruction and track fitting algorithms for CGEM-IT at BESIII
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作者 郭玥 王亮亮 +12 位作者 鞠旭东 伍灵慧 修青磊 王海霞 董明义 胡静然 李卫东 李卫国 刘怀民 欧阳群 沈肖雁 袁野 张瑶 《Chinese Physics C》 SCIE CAS CSCD 2016年第1期92-97,共6页
Considering the effects of aging on the existing Inner Drift Chamber (IDC) of BESIII, a GEM-based inner tracker, the Cylindrical-GEM Inner Tracker (CGEM-IT), is proposed to be designed and constructed as an upgrad... Considering the effects of aging on the existing Inner Drift Chamber (IDC) of BESIII, a GEM-based inner tracker, the Cylindrical-GEM Inner Tracker (CGEM-IT), is proposed to be designed and constructed as an upgrade candidate for the IDC. This paper introduces a full simulation package for the CGEM-IT with a simplified digitization model, and describes the development of software for cluster reconstruction and track fitting, using a track fitting algorithm based on the Kalman filter method. Preliminary results for the reconstruction algorithms which are obtained using a Monte Carlo sample of single muon events in the CGEM-IT, show that the CGEM-IT has comparable momentum resolution and transverse vertex resolution to the IDC, and a better z-direction resolution than the IDC. 展开更多
关键词 besiii CGEM-IT SIMULATION cluster reconstruction Kalman filter
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Fast control latency uncertainty elimination for the BESIII ETOF upgrade
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作者 汪昀 曹平 +1 位作者 刘树彬 安琪 《Chinese Physics C》 SCIE CAS CSCD 2016年第9期107-113,共7页
A new fanning topology is proposed to precisely fan out fast control signals in the Beijing Spectrometer(BESIII) end-cap time-of-flight(ETOF) electronics. However, uncertainty in transfer latency is introduced by ... A new fanning topology is proposed to precisely fan out fast control signals in the Beijing Spectrometer(BESIII) end-cap time-of-flight(ETOF) electronics. However, uncertainty in transfer latency is introduced by the new fanning channel, which will degrade the precision of fast control. In this paper, latency uncertainty elimination for the BESIII ETOF upgrade is introduced. The latency uncertainty is determined by a Time-Digital-Converter(TDC) embedded in a Field-Programmable Gate Array(FPGA) and is eliminated by re-capturing at synchronous and determinate time. Compared with the existing method of Barrel-cap TOF(BTOF), it has advantages of flexible structure, easy calibration and good adaptability. Field tests on the BESIII ETOF system show that this method effectively eliminates transfer latency uncertainty. 展开更多
关键词 transfer latency uncertainty SERDES besiii endcap TOF
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Construction and cosmic-ray test of the new inner drift chamber for BESIII
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作者 谢永骥 秦中华 +10 位作者 马骁妍 张建 伍灵慧 谢万 董明义 董静 季筱璐 江晓山 欧阳群 朱科军 陈元柏 《Chinese Physics C》 SCIE CAS CSCD 2016年第9期95-101,共7页
A new inner drift chamber has been built which can replace the aged part of the BESIII drift chamber when needed. The design of the new inner drift chamber can minimize the ineffective area in the very forward and bac... A new inner drift chamber has been built which can replace the aged part of the BESIII drift chamber when needed. The design of the new inner drift chamber can minimize the ineffective area in the very forward and backward region and hence reduce the background event rate. With this design, the new inner drift chamber is expected to have a longer lifetime and improved performance due to the lower occupancy. The endplates and the cylinder were machined with high precision. Wire stringing was performed after the mechanical structure was assembled, and good quality of wire stringing was ensured by measurement of the tension and leakage current of the wires. After completion of the physical construction of the new chamber, a cosmic-ray test was carried out to test its performance. The results of the cosmic-ray test show that the new inner chamber achieves a spatial resolution of127 μm and a d E/dx resolution of 6.4%, which satisfies the design specifications. 展开更多
关键词 besiii drift chamber new inner drift chamber cosmic-ray test
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