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Detector Effects on the Response of a Highly Granular Hadron Calorimeter to Single Hadrons
Bulletin of the Lebedev Physics Institute ( IF 0.6 ) Pub Date : 2020-06-11 , DOI: 10.3103/s1068335620040028
S. Korpachev , M. Chadeeva

Abstract—

In the detectors currently being developed for experiments on the next-generation lepton colliders, highly granular calorimeters are to be used. In particular, the hadron calorimeter is planned to be assembled from scintillation cells with direct readout of light by silicon photomultipliers. According to the results of experimental measurements of the light collection in a cell developed for the CALICE prototype hadron calorimeter, when detecting minimum ionizing particles, an estimate of the detector effects was obtained. The detector effect on the resolution of the ILD hadron calorimeter was studied by modeling the response of the detector to single neutral kaons. It was shown that the contribution of experimentally measured detector effects to the resolution for single particles is on the order of 0.5–1% in the range of hadron energy of 5–60 GeV.


中文翻译:

探测器对高颗粒强子量热仪对单个强子的响应的影响

摘要-

当前正在开发用于下一代轻子对撞机实验的探测器中,将使用高度颗粒的热量计。特别地,强子热量计计划由闪烁单元组装而成,并由硅光电倍增管直接读出光。根据针对CALICE原型强子量热仪开发的单元中光收集的实验测量结果,当检测到最小的电离粒子时,可以获得检测器效果的估计值。通过对探测器对单个中性钾离子的响应进行建模,研究了探测器对ILD强子量热仪分辨率的影响。结果表明,实验测得的检测器效应对单个颗粒分辨率的贡献约为0。
更新日期:2020-06-11
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