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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Recurrence spectra and dynamical simulation of Rydberg hydrogen atom near a metal surface
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Recurrence spectra and dynamical simulation of Rydberg hydrogen atom near a metal surface

机译:金属表面附近里德堡氢原子的递归谱和动力学模拟

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摘要

By using the closed-orbit theory including the effect of Coulomb scattering together with an electrical image potential approach, the recurrence spectra and the dynamical behaviours of the Rydberg hydrogen atom near a metal surface are presented. Theoretical analysis and numerical simulation reveal that the impacts of the image potential contributing to the recurrence spectrum are qualitatively analogous to that of the parallel electrical and magnetic fields on the Rydberg atom. The recurrence spectra are computed for a few selected scaled energies and the results demonstrate that the scaled energy dominates the dynamical properties of system. With the increase of the scaled energy E from small to large, the whole trend of spectral structure is from simple to complex, and then simple.
机译:通过使用包括库仑散射效应在内的闭轨理论和电图像电势方法,给出了金属表面附近里德堡氢原子的递归谱和动力学行为。理论分析和数值模拟表明,图像电势对递归谱的影响与Rydberg原子上平行电场和磁场的定性相似。计算了一些选定比例能量的递归谱,结果表明比例能量主导了系统的动力学性质。随着标度能量E从小到大的增加,频谱结构的总体趋势是从简单到复杂,然后再简单。

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