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Longitudinal atomic beam spin echo experiments: a possible way to study parity violation in hydrogen

机译:纵向原子束自旋回波实验:研究氢中奇偶违反的一种可能方法

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We discuss the propagation of hydrogen atoms in static electric and magnetic fields in a longitudinal atomic beam spin echo (lABSE) apparatus. Depending on the choice of the external fields the atoms may acquire both dynamical and geometrical quantum mechanical phases. As an example of the former, we show first in-beam spin rotation measurements on atomic hydrogen, which are in excellent agreement with theory. Additional calculations of the behaviour of the metastable 2S states of hydrogen reveal that the geometrical phases may exhibit the signature of parity-(P-)violation. This invites for possible future lABSE experiments, focusing on P-violating geometrical phases in the lightest of all atoms.
机译:我们讨论了氢原子在纵向原子束自旋回波(lABSE)设备中在静电和磁场中的传播。根据外部场的选择,原子可以同时获得动力学和几何量子力学相。作为前者的示例,我们显示了对原子氢的首次束内自旋旋转测量,与理论高度吻合。氢的亚稳2S状态的行为的其他计算表明,几何相可能表现出奇偶性-(P-)违反的特征。这邀请了未来可能的lABSE实验,重点关注所有原子中最轻的P违反几何相。

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