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New Approaches for Data Reconstruction and Analysis in the CBM Experiment

机译:CBM实验中数据重建与分析的新方法

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The future heavy-ion experiment CBM (FAIR/GSI, Darmstadt, Germany) will focus on measurement of very rare probes at interaction rates up to 10 MHz with data flow of up to 1 TB/s. The beam will provide free stream of beam particles without bunch structure. That requires full online event reconstruction and selection not only in space, but also in time, so-called 4D event building and selection. The FLES (First-Level Event Selection) reconstruction and selection package consists of several modules: track finding, track fitting, short-lived particles finding, event building and event selection. A time-slice is reconstructed in parallel between cores within a same CPU, thus minimizing the communication between CPUs. After all tracks are found and fitted in 4D, they are collected into clusters of tracks originated from common primary vertices, which then are fitted, thus identifying 4D interaction points registered within the time-slice. Secondary tracks are associated with primary vertices according to their estimated production time. After that, short-lived particles are found and the full event building process is finished. The last stage of the FLES package is the selection of events according to the requested trigger signatures.
机译:未来的重离子实验CBM(Fair / GSI,Darmstadt,德国)将专注于在相互作用率上测量高达10 MHz的非常罕见的探针,数据流量高达1 TB / s。该光束将提供无束结构的无束颗粒流。这需要完整的在线活动重建和选择不仅在空间内,而且还及时,所谓的4D活动建设和选择。 FLES(第一级事件选择)重建和选择包由多个模块组成:轨道查找,轨道拟合,短留粒子查找,活动建设和事件选择。在同一CPU内的核之间并行地重建时切片,从而最小化CPU之间的通信。在发现所有轨道并安装在4D中,它们被收集到源自公共主顶点的轨道集群中,然后装配,从而识别在时间切片内注册的4D交互点。辅助轨道根据其估计的生产时间与主要顶点相关联。之后,发现短寿命颗粒,结束了完整的事件构建过程。删除包的最后阶段是根据所请求的触发签名选择事件。

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