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Experiments of Search for Neutron Electric Dipole Moment and Spin-Dependent Short-Range Force.

机译:寻找中子电偶极矩和自旋相关的短程力的实验。

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摘要

It is of great importance to identify new sources of discrete symmetry violations because it can explain the baryon number asymmetry of our universe and also test the validity of various models beyond the standard model. Neutron Electric Dipole Moment (nEDM) and short-range force are such candidates for the new sources of P&T violations. A new generation nEDM experiment was proposed in USA in 2002, aiming at improving the current nEDM upperlimit by two orders of magnitude. Polarized 3He is crucial in this experiment and Duke is responsible for the 3He injection, measurements of 3He nuclear magnetic resonance (NMR) signal and some physics properties related to polarized 3He.;A Monte-Carlo simulation is used to simulate the entire 3He injection process in order to study whether polarized 3He can be successfully delivered to the measurement cell. Our simulation result shows that it is achievable to maintain more than 95% polarization after 3He atoms travel through very complicated paths in the presence of non-uniform magnetic fiels.;We also built an apparatus to demonstrate that the 3He precession signal can be measured under the nEDM experimental conditions using the Superconducting Quantum Interference Device (SQUID). Based on the measurement result in our lab, we project that the signal-to-noise ratio in the nEDM experiment will be at least 10.;During this SQUID test, two interesting phenomena were discovered. One is the pressure dependence of the T1 of the polarized 3He which has never been reported before. The other is the discrepancy between the theoretically predicted T2 and the experimentally measured T2 of the 3He precession signal. To investigate these two interesting phenomena, two dedicated experiments were built, and two papers have been published in Physical Review A.;In addition to the nEDM experiment, polarized 3He is also used in the search for the exotic short-range force. The high pressure 3He cell used in this experiment has a very thin window (∼250 mum) to maximize the effect from the force. We demonstrate that our new method could improve the current best experimental limit by two orders of magnitude. A rapid communication demonstrating the technique and the result was published in Physical Review D.
机译:识别离散对称违规的新来源非常重要,因为它可以解释我们宇宙中的重子数不对称性,还可以测试标准模型以外的各种模型的有效性。中子电偶极矩(nEDM)和短程力就是此类违反P&T行为新来源的人。 2002年,美国提出了新一代nEDM实验,旨在将当前的nEDM上限提高两个数量级。极化3He在此实验中至关重要,杜克负责3He注入,3He核磁共振(NMR)信号的测量以及与极化3He有关的一些物理性质。;蒙特卡罗模拟用于模拟整个3He注入过程为了研究极化的3He是否可以成功地传递到测量单元中。我们的仿真结果表明,在存在不均匀磁场的情况下,3He原子经过非常复杂的路径后,可以保持95%以上的极化。;我们还构建了一种仪器,以证明3He进动信号可以在使用超导量子干涉仪(SQUID)的nEDM实验条件。根据我们实验室的测量结果,我们预计nEDM实验中的信噪比至少应为10。在此SQUID测试中,发现了两个有趣的现象。一个是极化3He的T1的压力依赖性,这是以前从未报道过的。另一个是3He进动信号的理论预测T2与实验测量的T2之间的差异。为了研究这两个有趣的现象,建立了两个专门的实验,并在《物理评论》 A上发表了两篇论文;除了nEDM实验,极化3He还用于寻找奇特的短程力。本实验中使用的高压3He电池具有非常薄的窗口(约250微米),可最大程度地发挥作用力。我们证明了我们的新方法可以将当前的最佳实验极限提高两个数量级。证明该技术和结果的快速交流发表在《物理评论D》上。

著录项

  • 作者

    Zheng, Wangzhi.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Physics Radiation.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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