基于单片有源像素传感器的SiD数字ECal

Q3 Physics and Astronomy Instruments Pub Date : 2022-09-23 DOI:10.3390/instruments6040051
J. Brau, M. Breidenbach, Alexandre Habib, L. Rota, C. Vernieri
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引用次数: 4

摘要

SiD探测器概念利用其跟踪器和量热计的高粒度,在紧凑的设计中实现动量分辨率和粒子流量热计物理目标。通过应用单片有源像素传感器(MAPS),该合作一直对跟踪器和ECal的粒度改善潜力感兴趣,并在ILC TDR中描述了对SiD ECal中MAPS的研究。MAPS应用于升级SiD设计的工作正在进行中,其中包括基于缝合网状结构的通用SiD跟踪器/ECal设计的原型设计工作,以实现具有25 × 100微米像素的10 × 10 cm2传感器。在这些系统中应用大面积map将限制精细和昂贵的碰撞键合,提供更好的时序可能性,并且由于是更传统的CMOS代工工艺,应该比TDR概念便宜得多。小像素显著改善淋浴间隔。最近的仿真研究证实了之前的性能预测,表明基于数字命中簇计数的电磁能量分辨率比基于13 mm2像素的SiD TDR模拟设计提供了更好的性能。此外,两个淋浴间的分离非常好,小到毫米尺度。Geant4仿真结果证明了这些期望。
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The SiD Digital ECal Based on Monolithic Active Pixel Sensors
The SiD detector concept capitalizes on high granularity in its tracker and calorimeter to achieve the momentum resolution and particle flow calorimetry physics goals in a compact design. The collaboration has had a long interest in the potential for improved granularity in both the tracker and ECal with an application of monolithic active pixel sensors (MAPS) and a study of MAPS in the SiD ECal was described in the ILC TDR. Work is progressing on the MAPS application in an upgraded SiD design with a prototyping design effort for a common SiD tracker/ECal design based on stitched reticules to achieve 10 × 10 cm2 sensors with 25 × 100 micron2 pixels. Application of large area MAPS in these systems would limit delicate and expensive bump-bonding, provide possibilities for better timing, and should be significantly cheaper than the TDR concept due to being a more conventional CMOS foundry process. The small pixels significantly improve shower separation. Recent simulation studies confirm previous performance projections, indicating electromagnetic energy resolution based on digital hit cluster counting provides better performance than the SiD TDR analog design based on 13 mm2 pixels. Furthermore, the two shower separation is excellent down to the millimeter scale. Geant4 simulation results demonstrate these expectations.
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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