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展示一种用于测量核自旋相关宇称破坏的灵敏方法。

Demonstration of a Sensitive Method to Measure Nuclear-Spin-Dependent Parity Violation.

机构信息

Department of Physics, Yale University, P.O. Box 208120, New Haven, Connecticut 06520, USA.

出版信息

Phys Rev Lett. 2018 Apr 6;120(14):142501. doi: 10.1103/PhysRevLett.120.142501.

Abstract

Nuclear-spin-dependent parity violation (NSD-PV) effects in atoms and molecules arise from Z^{0} boson exchange between electrons and the nucleus, and from the magnetic interaction between electrons and the parity-violating nuclear anapole moment. We demonstrate measurements of NSD-PV that use an enhancement of the effect in diatomic molecules, here using the test system ^{138}Ba^{19}F. Our sensitivity surpasses that of any previous atomic parity violation measurement. We show that systematic errors can be suppressed to at least the level of the present statistical sensitivity. We measure the matrix element W of the NSD-PV interaction with total uncertainty δW/(2π)<0.7  Hz, for each of two configurations where W must have different signs. This sensitivity would be sufficient to measure NSD-PV effects of the size anticipated across a wide range of nuclei including ^{137}Ba in ^{137}BaF, where |W|/(2π)≈5  Hz is expected.

摘要

原子核自旋相关宇称破缺(NSD-PV)效应用于原子和分子,起因于电子和原子核之间 Z^{0}玻色子的交换,以及电子与宇称破缺核感应磁偶极矩的磁相互作用。我们展示了利用双原子分子中这种效应增强的 NSD-PV 测量结果,这里使用的测试系统是 ^{138}Ba^{19}F。我们的灵敏度超过了以往任何原子宇称破缺测量的灵敏度。我们表明,可以将系统误差抑制到至少与当前统计灵敏度相同的水平。我们测量了 NSD-PV 相互作用的矩阵元 W,对于 W 必须具有不同符号的两种配置中的每一种,总不确定度 δW/(2π)<0.7  Hz。这种灵敏度足以测量包括 ^{137}BaF 中的 ^{137}Ba 在内的各种原子核中预期的 NSD-PV 效应,其中预计 |W|/(2π)≈5  Hz。

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