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The algorithm of the CMS Level-1 Overlap Muon Track Finder trigger

机译:CMS Level-1重叠式Muon轨道查找器触发器的算法

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摘要

The CMS Level-1 trigger, based on custom electronics built around FPGA devices, was upgraded in 2016 to achieve the required performance with almost two times higher LHC luminosity than originally designed. The upgraded Level-1 muon trigger merges data from the three muon detectors in the CMS (DT, CSC, and RPC) in the track reconstruction stage - contrary to the legacy trigger which comprised three separate systems each based on one muon detector. This approach allows better use of the detector redundancy and improved measurement of the muon transverse momentum. However, it is particularly challenging in the barrel-endcap transition region, where up to 18 muon chamber layers are present, the detector geometry is complex, and the magnetic field bending the muon tracks is heterogeneous. For this region the Overlap Muon Track Finder (OMTF) uses a novel algorithm based on a naive Bayes classifier. The algorithm identifies the muon tracks and measures their momentum by calculating the probabilities of matching the detector hits to defined transverse momentum hypotheses. The algorithm was tailored to the needs of muon measurements based on the detector data (e.g. to cope with missing hits or multi-muon events) and implementation in FPGA technology. The algorithm details, performance, and optimization methods are discussed in this report.
机译:基于围绕FPGA器件构建的定制电子产品的CMS Level-1触发器在2016年进行了升级,以实现所需的性能,其LHC发光度比最初设计的高出近两倍。升级后的Level-1介子触发器在轨道重建阶段合并了CMS中三个介子探测器(DT,CSC和RPC)的数据-与传统触发器相反,传统触发器包括三个独立的系统,每个系统基于一个介子探测器。这种方法可以更好地利用探测器的冗余性,并改善对μ子横向动量的测量。但是,这在筒形端盖过渡区域中尤其具有挑战性,在该区域中存在多达18个μon腔室层,检测器的几何形状复杂,并且弯曲μ子轨道的磁场是异质的。对于该区域,重叠Muon轨道查找器(OMTF)使用了基于朴素贝叶斯分类器的新颖算法。该算法通过计算使检测器撞击与定义的横向动量假设相匹配的概率来识别介子轨迹并测量其动量。该算法是根据检测器数据(例如,应对丢失的命中或多介子事件)和FPGA技术中的实现量身定制的,旨在满足对介子测量的需求。该报告讨论了算法的详细信息,性能和优化方法。

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