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首页> 外文期刊>Communications in Theoretical Physics >Spin-Polarized Transport through a Quantum Dot Coupled to Ferromagnetic Leads and a Mesoscopic Ring
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Spin-Polarized Transport through a Quantum Dot Coupled to Ferromagnetic Leads and a Mesoscopic Ring

机译:通过与铁磁引线和介观环耦合的量子点的自旋极化传输

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摘要

Using an equation of motion technique, we investigate the spin-polarized transport through a quantum dot coupled to ferromagnetic leads and a mesoscopic ring by the Anderson Hamiltonian. We analyze the transmission probability of this system in both the equilibrium and nonequilibrium cases, and our results reveal that the transport properties show some noticeable characteristics depending upon the spin-polarized strength p, the magnetic flux |μ and the number of lattice sites NR in the mesoscopic ring. These effects might have some potential applications in spintronics.
机译:使用运动方程式,我们研究了通过耦合到铁磁引线的量子点和安德森·哈密顿量的介观环的自旋极化传输。我们分析了该系统在平衡和非平衡情况下的传输概率,我们的结果表明,传输性质显示出一些明显的特性,具体取决于自旋极化强度p,磁通量|μ和晶格数NR。介观环。这些效应可能在自旋电子学中有一些潜在的应用。

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