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Position reconstruction for segmented detectors

机译:分段探测器的位置重建

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The topic of the paper is the position reconstruction from signals of segmented detectors. With the help of a simple simulation, it is shown that the position reconstruction using the centre-of-gravity method is strongly biased, if the width of the charge (or e.g. light) distribution at the electrodes (or photo detectors) is less than the read-out pitch. A method is proposed which removes this bias for events with signals in two or more read-out channels and thereby improves the position resolution. The method also provides an estimate of the position-response function for every event. Examples are given for which its width as a function of the reconstructed position varies by as much as an order of magnitude. A fast Monte Carlo program is described which simulates the signals from a silicon pixel detector traversed by charged particles under different angles, and the results obtained with the proposed reconstruction method and with the centre-of-gravity method are compared. The simulation includes the local energy-loss fluctuations, the position-dependent electric field, the diffusion of the charge carriers, the electronics noise and charge thresholds for clustering, A comparison to test-beam-data is used to validate the simulation.
机译:纸张的主题是从分段探测器的信号重建的位置重建。在简单的模拟的帮助下,示出了如果电极(或照片探测器)的电荷(或例如光)分布的宽度小于读出的球场。提出了一种方法,其去除两个或多个读出通道中信号的事件的这种偏置,从而改善了位置分辨率。该方法还提供了每个事件的位置响应函数的估计。给出了其作为重建位置的函数的宽度的示例,其函数变化多大于级别。描述了一种快速蒙特卡罗程序,其模拟来自不同角度的带电粒子的硅像素检测器的信号进行比较,并且比较了所提出的重建方法和重心方法的结果。该模拟包括局部能量损耗波动,位置相关的电场,电荷载波的扩散,用于聚类的电子噪声和充电阈值,与测试束数据的比较用于验证模拟。

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