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Photon-assisted electronic structure and transport for a quantum dot

机译:光子辅助的电子结构和量子点的传输

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This paper investigates theoretically the electronic structure and transport of a two-level quantum dot irradiated under a strong laser field at low temperatures. Using the method of Keldysh equation of motion for nonequilibrium Green functions, it examines the time-averaged density of states and conductance for the system with photon polarization parallel with and perpendicular to the tunnelling current direction respectively. It is demonstrated that, by analysing some numerical examples, more photon sidebands resonance states and multi- and single-photon transitions are found when diagonal matrix elements dominate the interaction, while the electronic transitions due to multiphoton absorption are more or less suppressed when off-diagonal interaction dominates.
机译:本文从理论上研究了低温下在强激光场下照射的两能级量子点的电子结构和传输。使用非平衡格林函数的Keldysh运动方程方法,研究光子偏振分别平行于和垂直于隧道电流方向的系统的状态平均时间和电导率。结果表明,通过分析一些数值示例,当对角矩阵元素主导相互作用时,会发现更多的光子边带共振状态以及多光子和单光子跃迁,而当关闭时,由于多光子吸收而引起的电子跃迁或多或少受到抑制。对角线相互作用占主导。

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