SENSEI实验:用skip - ccd搜索亚gev暗物质

A. Botti
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引用次数: 1

摘要

skipper - ccd是像素化的硅基探测器,可以对同一电荷包进行多次非破坏性测量。它们的亚电子分辨率允许检测eV能量转移,例如预期的超轻暗物质与硅靶中的电子相互作用。SENSEI(亚电子噪声Skipper实验仪器)是第一个为此目的使用Skipper- ccd的实验,并使用该技术发表了世界领先的结果。在这次演讲中,我们介绍了SENSEI实验的概述以及在SNOLAB成功调试第二批科学级传感器后的现状。我们还将讨论使用船长- ccd进行罕见事件搜索的前景:从SENSEI的100克探测器到OSCURA的10公斤阵列等等
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The SENSEI Experiment: sub-GeV dark matter searches with skipper-CCDs
Skipper-CCDs are pixeled Silicon-based detectors that can perform multiple non-disruptive measurements of the same charge package. Their sub-electron resolution allows the detection of eV energy transfers, such as that expected from ultra-light dark matter interacting with electrons in a Silicon target. SENSEI (Sub-Electron Noise Skipper Experimental Instrument) is the first experiment to use Skipper-CCD for this purpose and to publish world-leading results using this technology. In this talk, we present an overview of the SENSEI experiment and the current status after the successful commissioning of the second batch of science-grade sensors at SNOLAB. We will also discuss the prospects in rare-events searches with skipper-CCDs: from SENSEI’s 100 g detector to OSCURA’s 10 kg array, and more
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