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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Spin-dependent magnetotransport through a mesoscopic ring in the presence of spin-orbit interaction
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Spin-dependent magnetotransport through a mesoscopic ring in the presence of spin-orbit interaction

机译:在自旋轨道相互作用下通过介观环的自旋依赖性磁传输

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The Schroedinger equation for an electron in a mesoscopic ring, in the presence of the Rashba and linear Dresselhaus terms of the spin-orbit interaction (SOI) and of a magnetic field B, is solved exactly. The effective electric fields of these terms as well as B have perpendicular and radial components. The interplay between them and B and their influence on the spectrum is studied. The transmission through such a ring, with two leads connected to it, is evaluated as a function of the SOI strengths and of the orientations of these fields. The Rashba and Dresselhaus terms affect the transmission in different ways. The transmission through a series of rings with different radii and with SOI in both arms of the rings or only in one of them is also evaluated. For weak magnetic fields B ≤ 1 T the influence of the Zeeman term on the transmission, assessed by perturbation theory, is negligible.
机译:精确求解了存在自旋轨道相互作用(SOI)和磁场B的Rashba和线性Dresselhaus项的介观环中电子的Schroedinger方程。这些项以及B的有效电场都具有垂直和径向分量。研究了它们与B之间的相互作用及其对光谱的影响。通过SOI强度和这些场的方向来评估通过这样的环的传输,并连接两个引线。 Rashba和Dresselhaus术语以不同方式影响传输。还评估了通过具有不同半径的一系列环以及在环的两个臂中或仅在其中一个环中具有SOI的传输。对于B≤1 T的弱磁场,通过微扰理论评估的Zeeman项对传输的影响可以忽略不计。

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