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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Detailed discussion of a linear electric field frequency shift induced in confined gases by a magnetic field gradient: Implications for neutron electric-dipole-moment experiments
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Detailed discussion of a linear electric field frequency shift induced in confined gases by a magnetic field gradient: Implications for neutron electric-dipole-moment experiments

机译:磁场梯度在封闭气体中引起的线性电场频移的详细讨论:对中子电偶极矩实验的启示

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摘要

The search for particle electric dipole moments (EDM's) is one of the best places to look for physics beyond the standard model of electroweak interaction because the size of time reversal violation predicted by the standard model is incompatible with present ideas concerning the creation of the baryon-antibaryon asymmetry. As the sensitivity of these EDM searches increases more subtle systematic effects become important. We develop a general analytical approach to describe a systematic effect recently observed in an electric dipole moment experiment using stored particles [J. M. Pendlebury , Phys. Rev. A 70, 032102 (2004)]. Our approach is based on the relationship between the systematic frequency shift and the velocity autocorrelation function of the resonating particles. Our results, when applied to well-known limiting forms of the correlation function, are in good agreement with both the limiting cases studied in recent work that employed a numerical and heuristic analysis. Our general approach explains some of the surprising results observed in that work and displays the rich behavior of the shift for intermediate frequencies, which has not been studied previously.
机译:除了电弱相互作用的标准模型外,寻找粒子电偶极矩(EDM)是寻找物理学的最佳场所之一,因为标准模型所预测的时间反转违规的大小与有关重子产生的当前观点不符。 -抗重子不对称。随着这些EDM搜索的敏感性增加,更细微的系统效果变得重要。我们开发了一种通用的分析方法来描述最近在使用存储粒子的电偶极矩实验中观察到的系统效应[J.彭德伯里(M. Pendlebury),物理学。 Rev.A 70,032102(2004)]。我们的方法基于系统的频移和共振粒子的速度自相关函数之间的关系。我们的结果,当应用于相关函数的已知极限形式时,与最近使用数值和启发式分析的工作中研究的两种极限情况都非常吻合。我们的一般方法解释了在该工作中观察到的一些令人惊讶的结果,并显示了中频移位的丰富行为,这以前没有研究过。

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