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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Influence of spin-orbit interaction on the magnetotransport of a periodically modulated two-dimensional electron gas
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Influence of spin-orbit interaction on the magnetotransport of a periodically modulated two-dimensional electron gas

机译:自旋轨道相互作用对周期调制二维电子气磁输运的影响

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摘要

Transport properties of a two-dimensional electron gas (2DEG) are studied in the presence of a normal magnetic field B, of a weak one-dimensional (1D) periodic potential modulation V(x) = V(0)cos(Kx), and of the Rashba spin-orbit interaction (SOI) of strength a. For V(x) = 0 the SOI mixes the up and down spin states of neighboring Landau levels into two, unequally spaced energy branches. For V(x) not equal 0 these levels broaden into bands and their bandwidths oscillate with B. The n-th level bandwidth of each series vanishes at different values of B. Relative to the ID-modulated 2DEG without SOI and one flat-band condition, there are two flat-band conditions that depend on a and the transport coefficients can change considerably. For weak a the Weiss oscillations show beating patterns while for strong a the Shubnikov-de Haas ones axe split in two.
机译:在存在弱一维(1D)周期电势调制V(x)= V(0)cos(Kx)的法向磁场B的情况下研究二维电子气(2DEG)的传输特性,以及强度a的Rashba自旋轨道相互作用(SOI)。对于V(x)= 0,SOI将相邻Landau层的上下自旋状态混合成两个不等间距的能量分支。对于V(x)不等于0的情况,这些电平扩展为频带,并且其带宽随B振荡。每个系列的第n级带宽在B的不同值时消失。相对于没有SOI和一个平坦频带的ID调制2DEG在这种情况下,有两个取决于a的平带条件,并且传输系数会发生很大变化。对于弱的Weiss振荡显示跳动模式,而对于强的Shubnikov-de Haas则一分为二。

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