首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Inverse Low Gain Avalanche Detectors (iLGADs) for precise tracking and timing applications
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Inverse Low Gain Avalanche Detectors (iLGADs) for precise tracking and timing applications

机译:反向低增益雪崩检测器(iLGAD),用于精确的跟踪和定时应用

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Low Gain Avalanche Detector (LGAD) is the baseline sensing technology of the recently proposed Minimum Ionizing Particle (MIP) end-cap timing detectors (MTD) at the Atlas and CMS experiments. The current MTD sensor is designed as a multi-pad matrix detector delivering a poor position resolution, due to the relatively large pad area, around 1 mm2; and a good timing resolution, around 20-30 ps. Besides, in his current technological incarnation, the timing resolution of the MTD LGAD sensors is severely degraded once the MIP particle hits the inter-pad region since the signal amplification is missing for this region. This limitation is named as the LGAD fill-factor problem. To overcome the fill factor problem and the poor position resolution of the MTD LGAD sensors, a p-in-p LGAD (iLGAD) was introduced. Contrary to the conventional LGAD, the iLGAD has a non-segmented deep p-well (the multiplication layer). Therefore, iLGADs should ideally present a constant gain value over all the sensitive region of the device without gain drops between the signal collecting electrodes; in other words, iLGADs should have a 100% fill-factor by design. In this paper, tracking and timing performance of the first iLGAD prototypes is presented.
机译:低增益雪崩检测器(LGAD)是最近在Atlas和CMS实验中提出的最小电离粒子(MIP)端盖定时检测器(MTD)的基线传感技术。当前的MTD传感器设计为多焊盘矩阵检测器,由于焊盘面积相对较大(约1 mm2),因此位置分辨率差。以及良好的定时分辨率,大约20-30 ps。此外,在他当前的技术化身中,一旦MIP粒子碰到焊盘间区域,MTD LGAD传感器的定时分辨率就会严重降低,因为该区域缺少信号放大。此限制称为LGAD填充因子问题。为了克服MTD LGAD传感器的填充因子问题和较差的位置分辨率,引入了点对点LGAD(iLGAD)。与传统的LGAD相反,iLGAD具有不分段的深p阱(乘法层)。因此,理想情况下,iLGAD应该在设备的所有敏感区域上呈现恒定的增益值,而在信号收集电极之间不会出现增益下降。换句话说,iLGAD的设计填充系数应为100%。本文介绍了首批iLGAD原型的跟踪和计时性能。

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