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Spin-polarized transport in one-dimensional waveguide structures with spatially-periodic electronic and magnetic fields

机译:具有空间周期性电子和磁场的一维波导结构中的自旋极化传输

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摘要

We investigate theoretically the spin-polarized transport in one-dimensional waveguide structure with spatially-periodic electronic and magnetic fields. The interplay of the spin-orbit interaction and in-plane magnetic field significantly modifies the spin-dependent transmission and the spin polarization. The in-plane magnetic fields increase the strength of the Rashba spin-orbit coupling effect for the electric fields along y axis and decrease this effect for reversing the electric fields, even counteract the Rashba spin-orbit coupling effect. It is very interesting to find that we may deduce the strength of the Rashba effect through this phenomenon.
机译:我们在理论上研究具有空间周期性电子和磁场的一维波导结构中的自旋极化传输。自旋轨道相互作用和平面内磁场的相互作用极大地改变了自旋相关的传输和自旋极化。平面内磁场增加了沿y轴电场的Rashba自旋轨道耦合效应的强度,并减小了用于反转电场的这种效应,甚至抵消了Rashba自旋轨道耦合效应。有趣的是,我们可以通过这种现象推断出拉什巴效应的强度。

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