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Theoretical study of a localized quantum spin reversal by the sequential injection of spins in a spin quantum dot

机译:通过自旋量子点中自旋的顺序注入进行局部量子自旋逆转的理论研究

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This is a theoretical study of the reversal of a localized quantum spin induced by sequential injection of spins for a spin quantum dot that has a quantum spin. The system consists of "electrode/quantum well (QW)/dot/ QW/electrode" junctions, in which the left QW has an energy level of conduction electrons with only up-spin. We consider a situation in which up-spin electrons are sequentially injected from the left electrode into the dot through the QW and an exchange interaction acts between the electrons and the localized spin. To describe the sequentially injected electrons, we propose a simple method based on approximate solutions from the time-dependent Schrodinger equation. Using this method, it is shown that the spin reversal occurs when the right QW has energy levels of conduction electrons with only down-spin. In particular, the expression of the reversal time of a localized spin is derived, and the upper and lower limits of the time are clearly expressed. This expression is expected to be useful for a rough estimation of the minimum relaxation time of the localized spin to achieve the reversal. We also obtain analytic expressions for the expectation value of the localized spin and the electrical current as a function of time. In addition, we found that a system with the nonmagnetic right QW exhibits spin reversal or nonreversal depending on the exchange interaction.
机译:这是对具有量子自旋的自旋量子点自旋的顺序注入引起的局部量子自旋逆转的理论研究。该系统由“电极/量子阱(QW)/点/ QW /电极”结组成,其中左QW具有仅向上旋转的传导电子能级。我们考虑一种情况,其中向上旋转的电子通过QW从左电极顺序注入到点中,并且电子与局部自旋之间发生交换相互作用。为了描述顺序注入的电子,我们提出了一种基于时间依赖型薛定inger方程的近似解的简单方法。使用这种方法,表明当正确的QW具有仅向下旋转的传导电子的能级时,就会发生自旋反转。特别地,导出了局部自旋的反转时间的表达,并且清楚地表达了时间的上限和下限。预期该表达式可用于粗略估计局部自旋的最小弛豫时间以实现反转。我们还获得了局部自旋和电流随时间变化的期望值的解析表达式。此外,我们发现具有非磁性右QW的系统根据交换相互作用表现出自旋反转或非反转。

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