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A Search for Low-Mass Dark Matter with the Cryogenic Dark Matter Search and the Development of Highly Multiplexed Phonon-Mediated Particle Detectors.

机译:利用低温暗物质搜索来寻找低质量暗物质,并开发了高度复用的声子介导的粒子探测器。

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摘要

A wide variety of astrophysical observations indicate that approximately 85% of the matter in the universe is nonbaryonic and nonluminous. Understanding the nature of this "dark matter" is one of the most important outstanding questions in cosmology. Weakly Interacting Massive Particles (WIMPs) are a leading candidate for dark matter since they would be thermally produced in the early universe in the correct abundance to account for the observed relic density of dark matter. If WIMPs account for the dark matter, then rare interactions from relic WIMPs should be observable in terrestrial detectors. Recently, unexplained excess events in the DAMA/LIBRA, CoGeNT, and CRESST-II experiments have been interpreted as evidence of scattering from WIMPs with masses ∼10 GeV and spin-independent scattering cross sections of 10--41--10 --40 cm2.;The Cryogenic Dark Matter Search (CDMS II) attempts to identify WIMP interactions using an array of cryogenic germanium and silicon particle detectors located at the Soudan Underground Laboratory in northern Minnesota. In this dissertation, data taken by CDMS II are reanalyzed using a 2 keV recoil energy threshold to increase the sensitivity to WIMPs with masses ∼10 GeV. These data disfavor an explanation for the DAMA/LIBRA, CoGeNT, and CRESST-II results in terms of spin-independent elastic scattering of WIMPs with masses ≲ 12 GeV, under standard assumptions. At the time of publication, they provided the strongest constraints on spin-independent elastic scattering from 5--9 GeV, ruling out previously unexplored parameter space.;To detect WIMPs or exclude the remaining parameter space favored by the most popular models will ultimately require detectors with target masses ≳ 1 ton, requiring an increase in mass by more than two orders of magnitude over CDMS II. For cryogenic detectors such as CDMS, scaling to such large target masses will require individual detector elements to be fabricated more quickly and cheaply, while maintaining the nearly background-free operation of the existing experiment. We describe the development of athermal phonon mediated particle detectors using Microwave Kinetic Inductance Detectors (MKIDs), which could provide a simpler path to extending the CDMS detector technology to the ton scale. Results from prototype devices have demonstrated energy resolutions as good as sigma = 0.55 keV at 30 keV, comparable to existing CDMS II detectors. Such designs can be scaled to kg-scale detector elements, while reducing the complexity of the detector fabrication and cryogenic readout electronics relative to existing designs. Since MKIDs are naturally multiplexed in the frequency domain, MKID-based designs also allow much finer pixelization of the phonon sensor, which is expected to enhance background rejection for large detectors while simultaneously reducing the number of wires needed to read out the detectors.
机译:各种各样的天文学观测表明,宇宙中约有85%的物质是非重子和非发光的。理解这种“暗物质”的性质是宇宙学中最重要的悬而未决的问题之一。弱相互作用质量粒子(WIMP)是暗物质的主要候选者,因为它们会在早期宇宙中以正确的丰度产生热量,以解决观察到的暗物质的残留密度。如果WIMP占了暗物质,那么应该在地面探测器中观察到来自遗留WIMP的罕见相互作用。最近,DAMA / LIBRA,CoGeNT和CRESST-II实验中无法解释的过量事件已被解释为质量约为10 GeV且与自旋无关的散射截面为10--41--10 --40的WIMP散射的证据。低温暗物质搜索(CDMS II)试图使用位于明尼苏达州北部Soudan地下实验室的一系列低温锗和硅颗粒探测器来识别WIMP相互作用。本文采用2 keV反冲能量阈值重新分析CDMS II采集的数据,以提高对质量为10 GeV的WIMP的敏感性。这些数据不利于DAMA / LIBRA,CoGeNT和CRESST-II结果的解释,其取决于质量为≲的WIMP的自旋无关弹性散射。在标准假设下为12 GeV。在发布时,他们对5--9 GeV的自旋无关弹性散射提供了最强的约束,排除了以前未曾探索过的参数空间。要检测WIMP或排除最受欢迎模型所偏爱的剩余参数空间,最终将需要目标质量≳的探测器1吨,与CDMS II相比,质量增加了两个数量级以上。对于低温检测器(例如CDMS),要缩放到如此大的目标质量,将需要更快速,更便宜地制造单个检测器元件,同时保持现有实验几乎没有背景的操作。我们描述了使用微波动力学电感检测器(MKIDs)的无声子介导的粒子检测器的发展,这可能为将CDMS检测器技术扩展到吨级提供更简单的途径。原型设备的结果表明,在30 keV时,能量分辨率高达sigma = 0.55 keV,与现有的CDMS II检测器相当。相对于现有设计,这样的设计可以按比例缩放至千克规模的检测器元件,同时降低检测器制造和低温读出电子设备的复杂性。由于MKID在频域中自然地多路复用,因此基于MKID的设计还允许声子传感器的像素化程度更高,这有望增强大型探测器的背景抑制性能,同时减少读出探测器所需的导线数量。

著录项

  • 作者

    Moore, David Craig.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Astrophysics.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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