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DAMIC-M experiment: Thick, silicon CCDs to search for light dark matter

机译:DAMIC-M实验:厚硅CCD搜寻浅色暗物质

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This report presents an overview of the unconventional use of charge-coupled devices (CCDs) to search for Dark Matter (DM). The DArk Matter in CCDs (DAMIC Experiment) employs the bulk silicon of thick, fully-depleted CCDs as a target for ionization signals produced by interations of particle dark matter from the galactic halo. The DAMIC collaboration has engaged in an extensive campaign of characterization efforts to understand the response of these CCDs to low-energy nuclear recoils and their unique capabilities, including the use of high spatial resolution for both the rejection and study of backgrounds. The preliminary results of DAMIC prove the performance of the detector, provide measurements of the background contamination and demonstrate the potentiality for DM searches, with only ~40 grams of detector mass. The next phase of the experiment, DAMIC-M (DArk Matter in CCDs at Modane), will consist of a kg-sized detector, implementing the most massive CCDs ever built. These CCDs will feature sub-electron noise and will be deployed in a low-radioactivity environment at the Laboratoire Souterrain de Modane in France.
机译:本报告概述了非常规使用电荷耦合器件(CCD)来搜索暗物质(DM)的情况。 CCD中的DArk物质(DAMIC实验)采用厚的,完全耗尽的CCD的块状硅作为靶标,该靶标是来自银河晕的粒子暗物质相互作用产生的电离信号。 DAMIC合作组织开展了广泛的表征工作,以了解这些CCD对低能核后坐力的反应及其独特的功能,包括使用高空间分辨率来拒绝和研究背景。 DAMIC的初步结果证明了检测器的性能,提供了背景污染的测量,并证明了仅约40克检测器质量的DM搜索潜力。实验的下一阶段,即DAMIC-M(位于Modane的CCD中的DArk Matter),将由一个千克大小的探测器组成,该探测器将实现有史以来最大型的CCD。这些CCD具有亚电子噪声,将部署在法国Modane实验室的低放射性环境中。

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