Low energy depositions using smart electronic readout on Skipper-CCD for lightweight Dark Matter experiment

Lucas Giardino, G. F. Moroni, F. Chierchie, J. Tiffenberg
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引用次数: 0

Abstract

Charge-Coupled Devices (CCDs) sensors have been at the forefront of high precision and resolution imaging ever since their development. Scientific CCDs and the Skipper-CCD pushed the boundaries for sensing very weak ionizing particles, as they allow to detect without error the charge signal (even a single electron-hole pair) collected on every pixel of the detector. To obtain such precision these sensors have a slow readout time, and this has the effect of producing images with multiple particles crossing the active detection region, hindering the posterior analysis. Recently, a new electronic controller was created, the Low Threshold Acquisition or LTA. The LTA allows to perform Skipper-precision readout on selected regions of the detector. This work presents the first physics experiment utilizing the LTA ever conducted, where the spatial distribution of single electron events is studied and compared against a computational model of photon production by Cherenkov radiation, finding a close agreement between both distributions.
轻量化暗物质实验中skippper - ccd上智能电子读数的低能量沉积
电荷耦合器件(ccd)传感器自发展以来一直处于高精度和分辨率成像的前沿。科学ccd和Skipper-CCD推动了检测非常弱的电离粒子的界限,因为它们可以准确地检测到探测器每个像素上收集的电荷信号(即使是单个电子-空穴对)。为了获得这样的精度,这些传感器的读出时间很慢,这导致产生的图像中有多个粒子穿过主动检测区域,阻碍了后验分析。最近,一种新的电子控制器被创建,低阈值采集或LTA。LTA允许在探测器的选定区域执行船长精度读出。这项工作提出了有史以来第一个利用LTA进行的物理实验,其中研究了单电子事件的空间分布,并将其与切伦科夫辐射产生光子的计算模型进行了比较,发现两种分布之间存在密切的一致性。
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