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
It is crucial to determine the spin and parity (jR) of Zc(3900)+ for understanding its structure. We perform a helicity amplitude analysis on Zc(3900)+ in the process e+e- →π+π-J/φ* with the hypotheses ...It is crucial to determine the spin and parity (jR) of Zc(3900)+ for understanding its structure. We perform a helicity amplitude analysis on Zc(3900)+ in the process e+e- →π+π-J/φ* with the hypotheses JP = 0-, 1+, 1-, 2+ and 2-. To estimate the significance of JP = 1+ over other hypotheses, we perform a Monte Carlo simulation study, and we also discuss the prospect of measuring the spin parity in the future experiment with a large data sample.展开更多
文摘本文介绍了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。
基金Supported by the National Natural Science Foundation of China under Grant Nos 11175146 and 11375205the Netherlands Project CEP under Grant No 530-4CDP03
文摘It is crucial to determine the spin and parity (jR) of Zc(3900)+ for understanding its structure. We perform a helicity amplitude analysis on Zc(3900)+ in the process e+e- →π+π-J/φ* with the hypotheses JP = 0-, 1+, 1-, 2+ and 2-. To estimate the significance of JP = 1+ over other hypotheses, we perform a Monte Carlo simulation study, and we also discuss the prospect of measuring the spin parity in the future experiment with a large data sample.