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Experimental Upper Bound and Theoretical Expectations for Parity-Violating Neutron Spin Rotation in He-4

Frontiers in genetics(2019)SCI 3区

Univ Washington

Cited 29|Views3
Abstract
Neutron spin rotation is expected from quark-quark weak interactions in the standard model, which induce weak interactions among nucleons that violate parity. We present the results from an experiment searching for the effect of parity violation via the spin rotation of polarized neutrons in a liquid He-4 medium. The value for the neutron spin rotation angle per unit length in He-4, d phi/dz = [+2.1 +/- 8.3(stat.) (+2.9)(-0.2)(sys.)] x 10(-7) rad/m, is consistent with zero. The result agrees with the best current theoretical estimates of the size of nucleon-nucleon weak amplitudes from other experiments and with the expectations from recent theoretical approaches to weak nucleon-nucleon interactions. In this paper we review the theoretical status of parity violation in the (n) over right arrown + He-4 system and discuss details of the data analysis leading to the quoted result. Analysis tools are presented that quantify systematic uncertainties in this measurement and that are expected to be essential for future measurements.
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要点】:本文研究了在液态He-4中极化中子的自旋旋转现象,确定了中子自旋旋转角度的实验上限,并验证了与标准模型中关于宇称破坏的理论预期相符合的结果。

方法】:通过在液态He-4中测量极化中子的自旋旋转角度,采用理论模型分析弱相互作用中宇称破坏的效应。

实验】:实验在液态He-4中进行了极化中子自旋旋转的测量,使用了相应的数据分析工具来评估系统不确定性,得到了d φ/dz = [+2.1 +/- 8.3(stat.) (+2.9)(-0.2)(sys.)] x 10(-7) rad/m的结果,该结果与当前最佳的理论估计和其他实验结果一致。