论文标题
船长CCD的低阈值收购控制器
Low Threshold Acquisition controller for Skipper CCDs
论文作者
论文摘要
船长电荷耦合器件(船长CCD)的开发是感知非常弱电离颗粒的主要技术突破。传感器允许通过明确测定每个单元或像素收集的电荷信号,即使对于单电子孔对电离,也可以通过明确测定每个电池或像素收集的电荷信号来达到硅材料作为电荷信号传感器的最终灵敏度。由于缺乏特定的设备来以最终的性能操作传感器,因此广泛使用该技术受到限制。在这项工作中,提出了一个简单的单板船长-CCD控制器,目的是在高灵敏度科学应用中操作检测器。本文介绍了低阈值获取(LTA)的主要组件和功能以及连接到船长CCD传感器时的实验结果。测量结果表明,用于5000像素测量值的0.039 E $^-_ {RMS} $/PIX的前所未有的深层电子噪声。
The development of the Skipper Charge Coupled Devices (Skipper-CCDs) has been a major technological breakthrough for sensing very weak ionizing particles. The sensor allows to reach the ultimate sensitivity of silicon material as a charge signal sensor by unambiguous determination of the charge signal collected by each cell or pixel, even for single electron-hole pair ionization. Extensive use of the technology was limited by the lack of specific equipment to operate the sensor at the ultimate performance. In this work a simple, single-board Skipper-CCD controller is presented, aimed for the operation of the detector in high sensitivity scientific applications. The article describes the main components and functionality of the Low Threshold Acquisition (LTA) together with experimental results when connected to a Skipper-CCD sensor. Measurements show unprecedented deep sub-electron noise of 0.039 e$^-_{rms}$/pix for 5000 pixel measurements.