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XENON100 Dark Matter Search: Scintillation Response of Liquid Xenon to Electronic Recoils.

机译:XENON100暗物质搜索:液态氙对电子后座的闪烁响应。

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摘要

Dark matter is one of the missing pieces necessary to complete the puzzle of the universe. Numerous astrophysical observations at all scales suggest that 23 % of the universe is made of nonluminous, cold, collisionless, nonbaryonic, yet undiscovered dark matter. Weakly Interacting Massive Particles (WIMPs) are the most well-motivated dark matter candidates and significant efforts have been made to search for WIMPs.;The XENON100 dark matter experiment is currently the most sensitive experiment in the global race for the first direct detection of WIMP dark matter. XENON100 is a dual-phase (liquid-gas) time projection chamber containing a total of 161 kg of liquid xenon (LXe) with a 62kg WIMP target mass. It has been built with radiopure materials to achieve an ultra-low electromagnetic background and operated at the Laboratori Nazionali del Gran Sasso in Italy. WIMPs are expected to scatter off xenon nuclei in the target volume. Simultaneous measurement of ionization and scintillation produced by nuclear recoils allows for the detection of WIMPs in XENON100. Data from the XENON100 experiment have resulted in the most stringent limits on the spin-independent elastic WIMP-nucleon scattering cross sections for most of the significant WIMP masses.;As the experimental precision increases, a better understanding of the scintillation and ionization response of LXe to low energy (< 10 keV) particles is crucial for the interpretation of data from LXe based WIMP searches. A setup has been built and operated at Columbia University to measure the scintillation response of LXe to both electronic and nuclear recoils down to energies of a few keV, in particular for the XENON100 experiment.;In this thesis, I present the research carried out in the context of the XENON100 dark matter search experiment. For the theoretical foundation of the XENON100 experiment, the first two chapters are dedicated to the motivation for and detection medium choice of the XENON100 experiment, respectively. A general review about dark matter focusing on WIMPs and their direct detection with liquid noble gas detectors is presented in Chap. 1. LXe as an attractive WIMP detection medium is explained in Chap. 2. The XENON100 detector design, the detector, and its subsystems are detailed in Chap. 3. The calibration of the detector and the characterized detector response used for the discrimination of a WIMP-like signal against background are explained in Chap. 4. In an effort to understand the background, anomalous electronic recoils were studied extensively and are described in Chap. 5. In order to obtain a better understanding of the electronic recoil background of XENON100, including an estimation of the electronic recoil background contribution, as well as to interpret dark matter results such as annual modulation, measurement of the scintillation yield of low-energy electrons in LXe was performed in 2011, with the dedicated setup mentioned above. The results from this measurement are discussed in Chap. 6. Finally, the results for the latest science data from XENON100 to search for WIMPs, comprising 225 live-days taken over 13 months during 2011 and 2012 are explained in Chap. 7.
机译:暗物质是完成宇宙拼图所必需的缺失部分之一。在各个尺度上的许多天体物理学观察表明,宇宙的23%是由无光,冷,无碰撞,无重子但尚未发现的暗物质组成的。弱相互作用质量粒子(WIMP)是最有动力的暗物质候选者,并且已经为寻找WIMP做出了巨大的努力。XENON100暗物质实验是目前全球范围内最敏感的首次直接检测WIMP的实验。暗物质。 XENON100是一个双相(液-气)时间投影室,其中包含总计161 kg的液态氙(LXe),WIMP目标质量为62kg。它由放射纯净材料制成,可实现超低电磁背景,并在意大利的Laboratori Nazionali del Gran Sasso进行了操作。 WIMP有望从目标体积中的氙核中飞散出来。同时测量由核后坐力产生的电离和闪烁,可以检测XENON100中的WIMP。 XENON100实验的数据已对大多数重要的WIMP质量产生了最严格的自旋无关弹性WIMP-核子散射截面限制;随着实验精度的提高,人们对LXe的闪烁和电离响应有了更好的了解低能量(<10 keV)颗粒对于解释基于LXe的WIMP搜索的数据至关重要。在哥伦比亚大学已经建立并运行了一个装置,用于测量LXe对电子和核反冲力直至几keV能量的闪烁响应,特别是对于XENON100实验。 XENON100暗物质搜索实验的背景。为XENON100实验的理论基础,前两章分别致力于XENON100实验的动机和检测介质的选择。第一章介绍了有关暗物质的一般性综述,重点是WIMP及其通过液态稀有气体检测器直接检测。 1. Chap中解释了LXe作为有吸引力的WIMP检测介质。 2. XENON100检测器设计,检测器及其子系统在第二章中详细介绍。 3.第4章将介绍用于区分WIMP类信号与背景的检测器校准和特征化的检测器响应。 4.为了理解背景,对异常电子反冲进行了广泛的研究,并在第一章中进行了介绍。 5.为了更好地了解XENON100的电子反冲背景,包括估计电子​​反冲背景的贡献,并解释暗物质的结果,例如年度调制,低能电子闪烁产量的测量LXe的开发工作已于2011年进行,采用了上述专用设置。此测量的结果将在第二章中讨论。 6.最后,第一章介绍了XENON100用于搜索WIMP的最新科学数据的结果,该结果包括2011年和2012年的13个月中共225个工作日。 7。

著录项

  • 作者

    Lim, Kyungeun Elizabeth.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Physics Astrophysics.;Physics General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 259 p.
  • 总页数 259
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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