论文标题

CRILIN:具有纵向信息的晶量热量计

Crilin: A CRystal calorImeter with Longitudinal InformatioN for a future Muon Collider

论文作者

Ceravolo, S., Colao, F., Curatolo, C., Di Meco, E., Diociaiuti, E., Lucchesi, D., Paesani, D., Pastrone, N., Saputi, A., Sarra, I., Sestini, L., Tagnani, D.

论文摘要

在新的能源边界实验中的物理过程的测量需要出色的空间,时间和能量分辨率,以解决准确的高能喷射器的结构。在未来的MUON对撞机中,光束诱导的背景(BIB)代表了探测器设计和事件重建算法的主要挑战。应选择量热量器的技术和设计,以减少围嘴的效果,同时保持良好的物理性能。可以推断出几种要求:i)高粒度,以减少同一量热计细胞中围嘴颗粒的重叠; ii)良好的时机(100 ps的订单)以减少围兜的超时组件; iii)纵向分割,以区分信号淋浴与围兜产生的假阵雨; iv)良好的能量分辨率(小于10%/sqrt(e))以获得良好的物理性能,正如概念粒子流量热量表所证明的那样。我们的建议由基于氟化物晶体(PBF2)读数的半均匀电磁训练表组成,表面式紫外线扩展的硅光层面(SIPMS):Crilin量热计。在本文中,已经分析了MUON对撞机框架中的Crilin量热仪的性能。我们报告了单个组件的表征以及一个小规模原型的开发,每个原型由2层组成,每个晶体的2层。

The measurement of physics processes at new energy frontier experiments requires excellent spatial, time, and energy resolutions to resolve the structure of collimated high-energy jets. In a future Muon Collider, the beam-induced backgrounds (BIB) represent the main challenge in the design of the detectors and of the event reconstruction algorithms. The technology and the design of the calorimeters should be chosen to reduce the effect of the BIB, while keeping good physics performance. Several requirements can be inferred: i) high granularity to reduce the overlap of BIB particles in the same calorimeter cell; ii) excellent timing (of the order of 100 ps) to reduce the out-of-time component of the BIB; iii) longitudinal segmentation to distinguish the signal showers from the fake showers produced by the BIB; iv) good energy resolution (less than 10%/sqrt(E)) to obtain good physics performance, as has been already demonstrated for conceptual particle flow calorimeters. Our proposal consists of a semi-homogeneous electromagnetic calorimeter based on Lead Fluoride Crystals (PbF2) readout by surface-mount UV-extended Silicon Photomultipliers (SiPMs): the Crilin calorimeter. In this paper, the performances of the Crilin calorimeter in the Muon Collider framework for hadron jets reconstruction have been analyzed. We report the single components characterizations together with the development of a small-scale prototype, consisting of 2 layers of 3x3 crystals each.

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