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Manipulation of Pauli spin blockade in double quantum dot systems

机译:双量子点系统中保利旋转封锁的操纵

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Pauli spin blockade (PSB) is a significant physical effect in double quantum dot (DQD) systems. In this paper, we start from the fundamental quantum model of the DQD with the electron-electron interaction being considered and then systematically study the PSB effect in DQD by using a recently developed nonperturbative method, the hierarchical equations of motion approach. By checking the current-voltage and nonequilibrium spectral function features, the physical picture of the PSB is explicitly elucidated. Then, various kinds of manipulation of PSBs are discussed, including gate voltage, exchange interaction, and electron spin resonance. Three main characteristics beyond low-order perturbation theory are demonstrated in detail as follows: (1) the finite leakage current in the strongly correlated limit; (2) the enhancement and lifting of PSB by exchange interaction; and (3) the ON-and-OFF switch of PSB by real-time modulation. Published by AIP Publishing.
机译:Pauli旋转阻滞(PSB)是双量子点(DQD)系统中的显着物理效果。 在本文中,我们从DQD的基本量子模型开始,通过使用最近开发的非培训方法来系统地研究DQD中的PSB效应,运动方法的层次方程。 通过检查电流 - 电压和非纤维谱函数特征,明确阐明了PSB的物理图片。 然后,讨论了PSB的各种操纵,包括栅极电压,交换相互作用和电子自旋共振。 超出低阶扰动理论的三个主要特征如下说明:(1)强度相关的有限漏电流; (2)通过交换互动提升和提升PSB; (3)PSB通过实时调制开关开关。 通过AIP发布发布。

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