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Influence of trajectory-dependent Stark and Zeeman effects on resonant coherent excitation of relativistic hydrogen-like ions channeled in a crystal

机译:依赖于轨迹的Stark和Zeeman效应对在晶体中传输的相对论氢样离子的共振相干激发的影响

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摘要

The planar channeling of ultra-relativistic heavy hydrogen-like ions is considered. In the rest frame of a channeled ion the magnetic and electric fields act on the orbital electron. The influence of these fields leads to the Stark and Zeeman effects of energy levels of orbital electron, and thus changes the conditions of resonant coherent excitation of an ion. In this work the theory of combined Stark-Zeeman effect (when the influence of electric and magnetic fields is comparable) is developed. Also the theoretical model of resonant coherent excitation in this case is suggested.
机译:考虑了超相对论重氢样离子的平面沟道。在通道离子的其余框架中,磁场和电场作用在轨道电子上。这些场的影响导致轨道电子能级的斯塔克效应和塞曼效应,从而改变了离子共振相干激发的条件。在这项工作中,提出了组合史塔克-塞曼效应的理论(当电场和磁场的影响相当时)。还提出了这种情况下共振相干激励的理论模型。

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