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Spin-dependent transport through quantum dot with inelastic interactions

机译:通过具有非弹性相互作用的量子点的自旋依赖性传输

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摘要

Using the Keldysh nonequilibrium Green function method, we theoretically investigate the electron transport properties of a quantum dot coupled to two ferromagnetic electrodes, with inelastic electron-phonon interaction and spin flip scattering present in the quantum dot. It is found that the electron-phonon interaction reduces the current, induces new satellite polaronic peaks in the differential conductance spectrum, and at the same time leads to oscillatory tunneling magnetoresistance effect. Spin flip scattering suppresses the zero-bias conductance peak and splits it into two, with different behaviors for parallel and anti-parallel magnetic configuration of the two electrodes. Consequently, a negative tunneling magnetoresistance effect may occur in the resonant tunneling region, with increasing spin flip scattering rate.
机译:使用Keldysh非平衡格林函数方法,我们从理论上研究了耦合到两个铁磁电极的量子点的电子传输性质,其中量子点中存在非弹性电子-声子相互作用和自旋翻转散射。发现电子-声子相互作用降低电流,在差分电导谱中感应出新的卫星极化峰,同时导致振荡隧穿磁阻效应。自旋翻转散射可抑制零偏电导峰并将其分成两个,对于两个电极的平行和反平行磁配置,其行为不同。因此,随着自旋翻转散射速率的增加,在共振隧穿区域中可能出现负隧穿磁阻效应。

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