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The limiting background in a dark matter search at shallow depth.

机译:暗物质搜索中的限制背景在浅深度进行。

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摘要

A convincing body of evidence from observational and theoretical astrophysics suggests that matter in the universe is dominated by a non-luminous, non-baryonic, non-relativistic component. Weakly Interacting Massive Particles (WIMPS) are a proposed particle candidate that satisfy all of the above criteria. They are a front-runner among dark matter candidates because their predicted contribution to matter in the universe is cosmologically significant and because they may arise naturally from supersymmetric (SUSY) models of particle physics. The Cryogenic Dark Matter Search (CDMS) employs advanced detectors sensitive to nuclear recoils caused by WIMP scatters and capable of rejecting ionizing backgrounds.; The first phase of the experiment, conducted at a shallow site, is limited by a background of neutrons which are indistinguishable from WIMPs in terms of the acquired data. By accounting for and statistically subtracting these neutrons, CDMS I provides the best dark matter limits to date over a wide range of WIMP masses above 10 GeV/c2. These results also exclude the signal region claimed by the DAMA annual modulation search at a >71% confidence level.; The second phase of the experiment, located at a deep site, is scheduled to begin data acquisition in 2002. Due to longer exposures, larger detector mass, and low background rates at this site, data from CDMS II are expected to improve on present WIMP sensitivity by about two orders of magnitude.; Emphasized in this work are the research topics in which I have been directly involved. These include the work described in Chapters 3 and 5 with regard to the development and use of simulation tools, detailed studies into the limiting neutron background, and the present understanding of this background in relation to CDMS I and CDMS II. I was also involved in several detector development projects in preparation for CDMS II. Analysis of test data from a ZIP detector, planned for use in CDMS II, is presented in Chapter 6.
机译:来自观测和理论天体物理学的令人信服的证据表明,宇宙中的物质由非发光,非重子,非相对论组成。弱相互作用的质点粒子(WIMPS)是满足所有上述标准的一种建议的候选粒子。它们是暗物质候选者中的佼佼者,因为它们对宇宙中物质的预测贡献在宇宙学上很重要,并且因为它们可能自然地来自超对称(SUSY)粒子物理学模型。低温暗物质搜索(CDMS)使用对WIMP散射引起的核后坐敏感的先进探测器,并能够拒绝电离背景。实验的第一阶段是在浅地点进行的,受中子背景的限制,中子的背景与所获取的数据无法与WIMP区分。通过考虑和统计上减去这些中子,CDMS I在超过10 GeV / c 2 的WIMP质量范围内提供了迄今为止最好的暗物质限制。这些结果还排除了DAMA年度调制搜索所声称的> 71%置信度的信号区域。该实验的第二阶段位于深处,计划于2002年开始进行数据采集。由于该地点的曝光时间更长,探测器质量更大且背景本底率较低,因此,在目前的WIMP上,来自CDMS II的数据有望得到改善灵敏度大约两个数量级。我直接参与的研究主题是这项工作的重点。这些包括在第3章和第5章中描述的有关开发和使用模拟工具的工作,对极限中子背景的详细研究,以及与CDMS I和CDMS II有关的当前背景知识。我还参与了几个为CDMS II准备的探测器开发项目。计划在CDMS II中使用的ZIP检测器对测试数据的分析将在第6章中介绍。

著录项

  • 作者

    Perera, Thushara Asanga.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 239 p.
  • 总页数 239
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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