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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Reconstruction and PID performance of the LHCb RICH detectors
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Reconstruction and PID performance of the LHCb RICH detectors

机译:LHCb RICH检测器的重建和PID性能

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Particle identification in the LHCb experiment is provided by two RICH detectors, covering a momentum range of approximately 1-100GeV/c. To maintain the integrity of the LHCb physics performance, it is essential to measure and monitor the particle identification efficiency and misidentification fraction over time. To achieve this, the unique decay kinematics associated with K~O-S, A and φ decays are exploited to obtain high purity samples of pions, protons and kaons through the use of tracking information alone. Such calibration samples then allow for an unbiased assessment of the performance of the RICH detectors. Given the high production rates of K~O-S, A and φ mesons at the LHC, monitoring of the RICH detectors performance is possible both "on-line" during running and "off-line" after full-reconstruction of the data. Following analysis of the first LHC collisions, the performance of the LHCb RICH detectors will be presented based on a preliminary alignment of the detector. Identification and mis-identification probabilities as a function of track momentum will be shown.
机译:LHCb实验中的粒子识别由两个RICH检测器提供,其动量范围约为1-100GeV / c。为了保持LHCb物理性能的完整性,必须随时间测量和监视颗粒识别效率和错误识别率。为了实现这一目标,仅通过跟踪信息就可以利用与K〜O-S,A和φ衰变相关的独特衰变运动学来获得高纯度的π,质子和钾离子样品。这样的校准样品就可以对RICH检测器的性能进行无偏评估。鉴于大型强子对撞机K_O-S,A和φ介子的高生产率,可以在运行期间“在线”监视和完全重建数据后“离线”监视RICH探测器的性能。在分析了第一个LHC碰撞之后,将基于探测器的初步对准来展示LHCb RICH探测器的性能。将显示作为跟踪动量的函数的识别和误识别概率。

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