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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Rydberg hydrogen atom near a metallic surface: Stark regime and ionization dynamics
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Rydberg hydrogen atom near a metallic surface: Stark regime and ionization dynamics

机译:金属表面附近的里德堡氢原子:斯塔克状态和电离动力学

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We investigate the classical dynamics of a hydrogen atom near a metallic surface in the presence of a uniform electric field. To describe the atom-surface interaction we use a simple electrostatic image model. Owing to the axial symmetry of the system, the z-component of the canonical angular momentum P-phi is an integral and the electronic dynamics is modeled by a two degrees of freedom Hamiltonian in cylindrical coordinates. The structure and evolution of the phase space as a function of the electric field strength is explored extensively by means of numerical techniques of continuation of families of periodic orbits and Poincare surfaces of section. We find that, due to the presence of the electric field, the atom is strongly polarized through two consecutive pitchfork bifurcations that strongly change the phase space structure. Finally, by means of the phase space transition state theory and the classical spectral theorem, the ionization dynamics of the atom is studied.
机译:我们研究在均匀电场存在下金属表面附近氢原子的经典动力学。为了描述原子与表面的相互作用,我们使用一个简单的静电图像模型。由于系统的轴向对称性,规范角动量P-phi的z分量是一个积分,并且通过圆柱坐标系中的两个自由度哈密顿量对电子动力学进行建模。借助于周期轨道族和截面的庞加莱表面的连续性的数字技术,广泛地探索了相空间的结构和演化与电场强度的关系。我们发现,由于电场的存在,原子通过两个连续的干草叉分叉强烈极化,这大大改变了相空间结构。最后,利用相空间跃迁态理论和经典谱定理,研究了原子的电离动力学。

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