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Quasi-classical description of the stark effect for an electron in an image-potential state

机译:在图像势状态下电子的凝固效应的准古典描述

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The quasi-classical approximation is used for establishing the positions of the classical turning points of an electron in an image-potential state exposed to an electric field of arbitrary strength perpendicular to the metal surface. It is demonstrated that the behavior of the system in electric fields of different directions is fundamentally different, which makes the dynamics of the low-dimensional system qualitatively different from that of its three-dimensional analog. The electric field strength leading to transition from the tunnel ionization regime to the regime of above-barrier decomposition is determined. The wavefunction of the bound electron state, which explicitly takes into account the influence of the electric field, is expressed in terms of elliptic integrals. The quantization condition is formulated, and the linear and quadratic in the field corrections to the electron energy are found. It is demonstrated that the difference between the linear Stark effect calculated by means of the perturbation theory and the quasi-classical energy shift in a weak field rapidly decreases with increasing quantum level number.
机译:准经典近似用于在暴露于垂直于金属表面的任意强度的电场的图像 - 电位状态下建立电子的经典转动点的位置。证明系统在不同方向的电场中的系统的行为是根本的,这使得低维系统的动态与其三维模拟的电力不同。确定导致从隧道电离制度转变为对上障分解的方案的电场强度。在椭圆形积分方面表达了明确地考虑了电场的影响的结合电子状态的浪潮。配方化条件被配制,找到对电子能量的田间校正中的线性和二次。据证明通过扰动理论计算的线性凝视效应与弱场中的准经典能量偏移之间的差异随着量子级数的增加而迅速降低。

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