星等亚能级在原子反常驻波衍射中的作用

A. Ishkhanyan
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引用次数: 1

摘要

讨论了共振行波相互作用的初始态制备对具有任意相干(1)原子间和(2)反传播波极化间任意相干磁性亚能级的两能级系统的反常驻波散射的影响。指出了磁亚能级和光偏振在形成特定类型的分裂初始动量分布中的潜在作用。发现了在初始波包分裂的特殊情况下,衍射图样干涉条纹的窄化效应,涉及两个平移态,其动量相差两个光子动量,对应于相同的能级。结果表明,这种变窄可以与已知的不对称散射相结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of magnitude sublevels in anomalous standing-wave diffraction of atoms
The influence of the initial state preparation by an interaction with resonant traveling waves on the anomalous standing wave scattering of a two-level system with magnetic sublevels for arbitrary coherency (1) between the atomic sublevels and (2) between the polarizations of counterpropagating waves is discussed. The potential of the magnetic sublevels and light polarization in the formation of specific types of split initial momentum distributions is pointed out. It is found a new effect of narrowing of the interference fringes of the diffraction pattern taking place at particular case of the initial wave packet splitting involving two translation states, whose momenta differ by two photon momenta, corresponding to the same energy level. It is shown that this narrowing can be combined with the known asymmetric scattering.
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