首页> 外文期刊>Atoms >Obtaining Atomic Matrix Elements from Vector Tune-Out Wavelengths Using Atom Interferometry
【24h】

Obtaining Atomic Matrix Elements from Vector Tune-Out Wavelengths Using Atom Interferometry

机译:使用原子干涉法从矢量调谐波长获得原子矩阵元素

获取原文
       

摘要

Accurate values for atomic dipole matrix elements are useful in many areas of physics, and in particular for interpreting experiments such as atomic parity violation. Obtaining accurate matrix element values is a challenge for both experiment and theory. A new technique that can be applied to this problem is tune-out spectroscopy, which is the measurement of light wavelengths where the electric polarizability of an atom has a zero. Using atom interferometry methods, tune-out wavelengths can be measured very accurately. Their values depend on the ratios of various dipole matrix elements and are thus useful for constraining theory and broadening the application of experimental values. To date, tune-out wavelength measurements have focused on zeros of the scalar polarizability, but in general the vector polarizability also contributes. We show here that combined measurements of the vector and scalar polarizabilities can provide more detailed information about the matrix element ratios, and in particular can distinguish small contributions from the atomic core and the valence tail states. These small contributions are the leading error sources in current parity violation calculations for cesium.
机译:原子偶极矩阵元素的准确值在物理的许多领域中都非常有用,尤其是在解释诸如原子奇偶性违规之类的实验时。获得准确的矩阵元素值对于实验和理论都是挑战。可以应用于此问题的新技术是调出光谱法,它是原子的电极化率为零的光波长的测量。使用原子干涉法,可以非常精确地测量出调出波长。它们的值取决于各种偶极矩阵元素的比率,因此对于约束理论和扩大实验值的应用很有用。迄今为止,调出波长的测量集中在标量极化率的零,但通常矢量极化率也有贡献。我们在这里表明,矢量和标量极化率的组合测量可以提供有关矩阵元素比率的更详细的信息,尤其可以区分原子核和价尾态的微小贡献。这些小贡献是当前铯奇偶校验违规计算中的主要错误来源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号