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Improving the Limit on the Electron EDM: Data Acquisition and Systematics Studies in the ACME Experiment.

机译:改善电子EDM的极限:ACME实验中的数据采集和系统研究。

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摘要

The ACME collaboration has completed a measurement setting a new upper limit on the size of the electron's permanent electric dipole moment (EDM). The existence of the EDM is well motivated by theories extending the standard model of particle physics, with predicted sizes very close to the current experimental limit. The new limit was set by measuring spin precession within the metastable H state of the polar molecule thorium monoxide (ThO). A particular focus here is on the automated data acquisition system developed to search for a precession phase odd under internal and external reversal of the electric field. Automated switching of many different experimental controls allowed a rapid diagnosis of major systematics, including the dominant systematic caused by non-reversing electric fields and laser polarization gradients. Polarimetry measurements made it possible to quantify and minimize the polarization gradients in our state preparation and probe lasers. Three separate measurements were used to determine the electric field that did not reverse when we tried to switch the field direction. The new bound of | de| < 8.7 x 10--29 e·cm is over an order of magnitude smaller than previous limits, and strongly limits T-violating physics at TeV energy scales.
机译:ACME合作完成了一项测量,为电子永久电偶极矩(EDM)的尺寸设定了新的上限。扩展粒子物理学标准模型的理论很好地激发了EDM的存在,其预测尺寸非常接近当前的实验极限。通过在极性分子一氧化oxide(ThO)的亚稳态H状态下测量自旋进动来设置新的限制。这里特别关注的是自动数据采集系统,该系统开发用于在电场的内部和外部反转下搜索进动相位奇数。自动切换许多不同的实验控制可以快速诊断主要系统,包括由不可逆电场和激光偏振梯度引起的主要系统。偏振测量可以在我们的状态准备和探测激光器中量化和最小化偏振梯度。当我们尝试切换磁场方向时,使用了三个单独的测量来确定不会反转的电场。 |的新界限de | <8.7 x 10--29 e·cm比先前的限制小一个数量级,并且在TeV能级上强烈限制了违反T的物理学。

著录项

  • 作者

    Hess, Paul William.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Physics Atomic.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 252 p.
  • 总页数 252
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:57

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