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Background Characterization and Discrimination in the Final Analysis of the CDMS II Phase of the Cryogenic Dark Matter Search.

机译:低温暗物质搜索的CDMS II阶段的最终分析中的背景特征和区分。

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摘要

The Cryogenic Dark Matter Search (CDMS) is designed to detect Weakly-Interacting Massive Particles (WIMPs) in the Milky Way halo. The phase known as CDMS II was performed in the Soudan Underground Laboratory. The final set of CDMS II data, collected in 2007-8 and referred to as Runs 125--8, represents the largest exposure to date for the experiment.;We seek collisions between WIMPs and atomic nuclei in disk-shaped germanium and silicon detectors. A key design feature is to keep the rate of collisions from known particles producing WIMP-like signals very small. The largest category of such background is interactions with electrons in the detectors that occur very close to one of the faces of the detector. The next largest category is collisions between energetic neutrons that bypass the experimental shielding and nuclei in the detectors. Analytical efforts to discriminate these backgrounds and to estimate the rate at which such discrimination fails have been refined and improved throughout each phase of CDMS.;Next-generation detectors for future phases of CDMS require testing at cryogenic test facilities. One such facility was developed at the University of Minnesota in 2007 and has been used continuously since then to test detectors for the next phase of the experiment, known as SuperCDMS.
机译:低温暗物质搜索(CDMS)旨在检测银河系晕圈中弱相互作用的大质量粒子(WIMP)。称为CDMS II的阶段是在Soudan地下实验室中进行的。最后一组CDMS II数据收集于2007-8年,称为Runs 125--8,是该实验迄今为止最大的暴露。我们寻求圆盘状锗和硅探测器中WIMP与原子核之间的碰撞。一个关键的设计特征是使产生WIMP样信号的已知粒子的碰撞率保持很小。这种背景的最大类别是与检测器中的电子的相互作用,该电子非常靠近检测器的一个面发生。第二大类是绕过探测器中的实验屏蔽和核的高能中子之间的碰撞。在CDMS的每个阶段中,用于区分这些背景并评估此类歧视失败率的分析工作都得到了完善和改进。用于CDMS未来阶段的下一代探测器需要在低温测试设施中进行测试。明尼苏达大学于2007年开发了一种这样的设备,此后一直用于实验的下一阶段的检测器,即SuperCDMS。

著录项

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Physics Astrophysics.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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