Ehrenfest Approach to the Adiabatic Invariants and Calculation of the Intervals of Time Entering the Energy Emission Process in Simple Quantum Systems

S. Olszewski
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引用次数: 1

Abstract

In the first step, the Ehrenfest reasoning concerning the adiabatic invariance of the angular orbital momentum is applied to the electron motion in the hydrogen atom. It is demonstrated that the time of the energy emission from the quantum level n+1 to level n can be deduced from the orbital angular momentum examined in the hydrogen atom. This time is found precisely equal to the time interval dictated by the Joule-Lenz law governing the electron transition between the levels n+1 and n. In the next step, the mechanical parameters entering the quantum systems are applied in calculating the time intervals characteristic for the electron transitions. This concerns the neighbouring energy levels in the hydrogen atom as well as the Landau levels in the electron gas submitted to the action of a constant magnetic field.
简单量子系统绝热不变量的Ehrenfest方法和进入能量发射过程的时间间隔的计算
在第一步中,将关于角轨道动量绝热不变性的Ehrenfest推理应用于氢原子中的电子运动。结果表明,从氢原子中的轨道角动量可以推导出从n+1量子能级到n能级的能量发射时间。发现该时间精确地等于由控制n+1和n之间的电子跃迁的焦耳-伦茨定律所规定的时间间隔。在下一步中,在计算电子跃迁的时间间隔特性时应用进入量子系统的机械参数。这涉及到氢原子中的相邻能级以及在恒定磁场作用下电子气中的朗道能级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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