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Magnetization of ballistic quantum dots induced by a linear-polarized microwave field

机译:线性极化微波场引起的弹道量子点的磁化

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On a basis of extensive analytical and numerical studies we show that a linear-polarized microwave field creates a stationary magnetization in mesoscopic ballistic quantum dots with two-dimensional electron gas being at a thermal equilibrium. The magnetization is proportional to a number of electrons in a dot and to a microwave power. Microwave fields of moderate strength create in a one dot of few micron size a magnetization which is by few orders of magnitude larger than a magnetization produced by persistent currents. The effect is weakly dependent on temperature and can be observed with existing experimental techniques. The parallels between this effect and ratchets in asymmetric nanostructures are also discussed.
机译:在广泛的分析和数值研究的基础上,我们表明,线性极化的微波场会在介观的弹道量子点中产生稳定的磁化,而二维电子气处于热平衡状态。磁化强度与点中的电子数量以及微波功率成正比。中等强度的微波场会在一个微米大小的点上产生磁化强度,该强度比持续电流产生的磁化强度大几个数量级。这种影响几乎不依赖于温度,可以通过现有的实验技术观察到。还讨论了这种效应与不对称纳米结构中的棘轮之间的相似之处。

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