Non-Hydrogenic Rydberg Atoms in Magnetic Fields

P. Dando, T. S. Monteiro, W. Jans, W. Schweizer
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引用次数: 3

Abstract

The classical and quanta! dynamics of non-hydrogenic Rydberg atoms in magnetic fields are investigated. Previous attempts to infer classical behaviour from quantum properties produced conflicting results: at low scaled energies (c:= -0.5) the nearest-neighbour statistics (NNS) were found to be at the chaotic (Wigner) limit while quantum phase-space distribu­ tions suggested a high degree of regularity. Here the classical limit is investigated directly by solving the equations of motion of the Diamagnetic Kepler problem (DKP) with an additional non-Coulombic model potential. It is found that typically trajectories are, over a long time-scale, ergodic. However over a shorter time-scale-in between collisions with the core-classical trajectories remain confined on the tori of the DKP. The origin of a well-known resonance in the NNS of hydrogen at c:= -0.316 is clarified by the comparison with the non-hydrogenic behaviour. However, the classical model only partially explains the quantum behaviour. The difficulties of quantizing such a system are discussed.
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磁场中的非氢里德伯原子
经典和量子!研究了非氢里德伯原子在磁场中的动力学。先前从量子特性推断经典行为的尝试产生了相互矛盾的结果:在低尺度能量(c:= -0.5)下,发现最近邻统计量(NNS)处于混沌(维格纳)极限,而量子相空间分布则显示出高度的规律性。本文通过求解带有附加非库仑模型势的反磁开普勒问题(DKP)的运动方程,直接研究了经典极限。我们发现,在很长的时间尺度上,典型的轨迹是遍历的。然而,在较短的时间尺度上——在与核心碰撞之间——经典轨迹仍然局限于DKP的环面。通过与非成氢行为的比较,澄清了在c:= -0.316处氢的NNS中一个众所周知的共振的起源。然而,经典模型只能部分解释量子行为。讨论了量化这种系统的困难。
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