Interaction between a moving atom and an electromagnetic wave

Zhang Jing-Tao, C. Zhaoyang, Xu Zhizhan
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引用次数: 4

Abstract

Dynamics of a two-level atom moving in an electromagnetic field is studied. The atomic motion gives rise to a momentum-dependent detuning which holds back the atomic transition, and leads to a momentum-dependent Rabi oscillation which causes an overlapping among different Rabi oscillations. When the field is in a Fock state, the atomic population and the mean momentum of the atom exhibit damping oscillation, the damping rate is related to the momentum distribution; the collapse-revival phenomena of the atomic population and the mean momentum will occur if the atomic momentum has some special distribution. When the field is in a superposition state, the collapse-revival phenomena are modified by the atomic momentum distribution and disappear for the wider atomic momentum wavepackets. We also find that each atomic level will split into two sublevels with the same energy difference when the field is in a Fock state and the atom has a definite momentum.
运动的原子和电磁波之间的相互作用
研究了二能级原子在电磁场中运动的动力学。原子运动产生动量依赖的失谐,阻碍了原子跃迁,并导致动量依赖的拉比振荡,导致不同拉比振荡之间的重叠。当场处于Fock态时,原子的原子居数和原子的平均动量表现出阻尼振荡,阻尼率与动量分布有关;如果原子动量具有某种特殊的分布,就会发生原子居群和平均动量的坍缩-恢复现象。当场处于叠加态时,坍缩-恢复现象受到原子动量分布的修正,对于更宽的原子动量波包,坍缩-恢复现象消失。我们还发现,当场处于Fock状态且原子具有确定的动量时,每个原子能级将分裂成具有相同能量差的两个子能级。
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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