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Electromagnetic-field-induced resonant structures for an open rectangular quantum dot

机译:电磁场诱导的矩形矩形量子点的共振结构

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We study theoretically the electron transport properties for an open rectangular quantum dot under an external electromagnetic field illumination in the ballistic regime. Using the effective mass free-electron approximation, the scattering matrix for the system has been formulated by the time-dependent mode-match method. Some interesting properties of the electron transmission have been demonstrated through serval numerical examples. The dependence of electron transmission on the electron incident energy is found to exhibit Fano dip structures due to the field-induced intersubband scatterings into quasibound states in the dot. Moreover, with an appropriate incident energy the electron transmission as a function of the field frequency and/or amplitude shows a rich structure. Our results suggest that the electron transport properties of an open rectangular quantum dot are affected by the interplay effects between the nonadiabatic dot-lead connection and the applied field.
机译:我们从理论上研究了在弹道状态下外部电磁场照射下一个开放的矩形量子点的电子传输性质。使用有效的质量自由电子近似,通过时变模式匹配方法来建立系统的散射矩阵。电子传输的一些有趣特性已通过实际数值示例得到了证明。发现电子传输对电子入射能量的依赖性表现出Fano倾斜结构,这是由于电场引起的子带间散射到点中的准结合态。此外,在适当的入射能量下,电子传输作为场频率和/或振幅的函数显示出丰富的结构。我们的结果表明,一个开放的矩形量子点的电子传输特性受到非绝热点-引线连接和施加场之间相互作用的影响。

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