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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Ultimate position resolution of pixel clusters with binary readout for particle tracking
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Ultimate position resolution of pixel clusters with binary readout for particle tracking

机译:具有二进制读数的像素簇的最终位置分辨率,可进行粒子跟踪

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摘要

Silicon tracking detectors can record the charge in each channel (analog or digital) or have only binary readout (hit or no hit). While there is significant literature on the position resolution obtained from interpolation of charge measurements, a comprehensive study of the resolution obtainable with binary readout is lacking. It is commonly assumed that the binary resolution ispitch∕12, but this is generally a worst case upper limit. In this paper we study, using simulation, the best achievable resolution for minimum ionizing particles in binary readout pixels. A wide range of incident angles and pixel sizes are simulated with a standalone code, using the Bichsel model for charge deposition. The results show how the resolution depends on angles and sensor geometry. Until the pixel pitch becomes so small as to be comparable to the distance between energy deposits in silicon, the resolution is always better, and in some cases much better, thanpitch∕12.
机译:硅跟踪探测器可以记录每个通道中的电荷(模拟或数字),或仅显示二进制读数(命中或不命中)。尽管有大量关于通过电荷测量插值获得的位置分辨率的文献,但仍缺乏对通过二进制读数可获得的分辨率的全面研究。通常假定二进制分辨率为pitch±12,但这通常是最坏情况的上限。在本文中,我们使用模拟研究了二进制读出像素中最小电离粒子的最佳可实现分辨率。使用Bichsel模型进行电荷沉积,可使用独立代码模拟各种入射角和像素大小。结果表明分辨率如何取决于角度和传感器几何形状。直到像素间距变小到可以与硅中的能量沉积之间的距离相媲美为止,分辨率始终优于间距12,甚至在某些情况下更好。

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