Conveners
PID & Misc: 1
- XiaoLong Wang (Fudan University)
PID & Misc: 2
- Sajan Easo (STFC)
PID & Misc: 3
- Zhonghua Qin (高能所)
Description
Zoom Link, ID:97990003364, Code:309122
The High-Luminosity LHC upgrade will present unprecedented challenges, including intense radiation and up to 200 simultaneous proton collisions. To cope with this, the CMS experiment will deploy a new MIP Timing Detector (MTD) to precisely timestamp MIP particles. This contribution focuses on the MTD's Barrel Timing Layer (BTL), which is now transitioning from a successfully validated design...
Particle identification (PID) plays a crucial role in particle physics experiments. A groundbreaking advancement in PID involves cluster counting (dN/dx), which measures primary ionizations along a particle’s trajectory within a high granularity time projection chamber (TPC), as opposed to conventional dE/dx measurements. A high granularity TPC with a pad size of 0.5x0.5 mm2 has been proposed...
Particle identification (PID) of cosmic‐ray nuclei using silicon strip detectors is employed in many space-born experiments, such as AMS-02, DAMPE, and HERD. However, the detector response exhibits strong dependence on the relative hit position between strips, and the nonlinear effects of front-end electronics under large charges make it difficult to establish explicit analytic expressions for...