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Microwave-dressed electron-impurity interaction in a two-dimensional electron gas system under intense microwave radiation fields and weak magnetic fields

机译:强微波辐射场和弱磁场下二维电子气系统中的微波修饰电子杂质相互作用

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摘要

Within a nonperturbative approach, the electron energy transfer rate induced by microwave-dressed electron-impurity interaction is analyzed theoretically in 2DEGs under weak perpendicular magnetic field. We find that for relatively low radiation levels cyclotron resonance (CR) is observed. However, when the radiation becomes intense, the peak of CR begins to split and the splitting increases with radiation intensity. Furthermore, we also show that multiphoton transition channels cannot be neglected in the vicinity of resonant region. The physical reasons behind these interesting finding are discussed. (C) 2015 Elsevier B.V. All rights reserved.
机译:在非摄动方法中,理论上分析了在弱垂直磁场下的2DEG中,微波束缚的电子-杂质相互作用引起的电子能量传递速率。我们发现,对于相对较低的辐射水平,可以观察到回旋加速器共振(CR)。但是,当辐射变强时,CR的峰开始分裂,并且分裂随着辐射强度的增加而增加。此外,我们还表明,在共振区域附近不能忽略多光子跃迁通道。讨论了这些有趣发现背后的物理原因。 (C)2015 Elsevier B.V.保留所有权利。

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