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Nuclear Matrix Elements for Tests of Fundamental Symmetries

机译:用于基本对称性的核基质元素

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The nuclear matrix elements for the momentum quadrupole operator are important for the interpretation of precision atomic physics experiments that search for violations of Lorentz symmetry. We use the configuration-interaction nuclear shell model and self-consistent mean field theory to calculate these matrix elements in ~(21) Ne. These are the first microscopic calculations for the momentum quadrupole tensor that go beyond the single-particle estimate. We show that the momentum matrix elements are strongly suppressed by the many-body correlations, in contrast to the well known enhancement of the spatial quadrupole nuclear matrix elements.
机译:动量Quadrupole运营商的核矩阵元件对于解释精确原子物理实验的解释是寻求违反洛伦兹对称性的。我们使用配置 - 交互核壳模型和自我一致的平均场理论来计算〜(21)NE中的这些矩阵元素。这些是超出单粒度估计的动量四极张力的第一种微观计算。我们表明,由于空间四极核基质元素的众所周知的增强,所以许多身体相关性强制抑制了动量矩阵元件。

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