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Modification of multipole transitions by twisted light

机译:扭灯改造多极过渡

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摘要

A theoretical analysis is presented for the excitation of single many-electron atoms and ions by twisted (or vortex) light. Special emphasis is put on excitations that can proceed via several electric and magnetic multipole channels. We argue that the relative strength of these multipoles is very sensitive to the topological charge and kinematic parameters of the incident light and can be strongly modified with respect to the plane-wave case. Most remarkably, the modification of multipole transitions by twisted radiation can be described by means of a geometrical factor. This factor is independent of the shell structure of a particular target atom and just reflects the properties of the light beam as well as the position of an atom with respect to the vortex axis. An analytical expression for the geometrical factor is derived for Bessel photons and for a realistic experimental situation in which the position of an atom is not well determined. To illustrate the use of the geometrical factor for the analysis of (future) measurements, detailed calculations are presented for the 3s3p ~3P_1 → 3s3p ~1P_1 excitation in neutral Mg.
机译:通过扭曲(或涡旋)光来提出一种理论分析,用于通过扭曲(或涡旋)光激发单个许多电子原子和离子。专门强调可以通过多个电气和磁性多极通道进行的激励。我们认为这些多能的相对强度对入射光的拓扑电荷和运动学参数非常敏感,并且可以相对于平面波壳体强烈地修改。最重要的是,可以通过几何因子来描述通过扭曲辐射的多极转变的修改。该因子与特定目标原子的壳结构无关,并且只需反映光束的性质以及相对于涡旋轴的原子的位置。用于贝塞尔光子的几何因子的分析表达,并且用于逼真的实验情况,其中原子的位置并不充分确定。为了说明使用(将来)测量的分析的几何因素,在中性MG中呈现3S3P〜3P_1→3S3P〜1P_1激发的详细计算。

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