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Self-similar bandgap structure and spin-polarized transport in quasiperiodic cascade Junctions of ferromagnet and semiconductor

机译:QuaSiphnet和半导体Quasipheriodic级联连接中的自我类似的带隙结构和旋转偏振传输

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We theoretically investigate spin-dependent transport in quasiperiodic cascade junctions of a ferromagnetic metal (FM) and semiconductor (SC), where FM and SC are arranged in the Fibonacci sequence. It is shown that spin-up and spin-down electrons possess different bandgap structures against the Rashba spin-orbit wave vector. The spin-dependent bandgap structure has the hierarchical characteristic and present self-similarity. Due to the quasiperiodicity, multiple resonant transmissions for spin-up or spin-down electrons can be observed within the bandgap; thereafter, spin polarization has multiple reversals. And it is also found that the electrical conductance can come from one kind of spin electrons around the resonant wave vector. These investigations may provide a unique way to design the devices such as spin filters and spin switches.
机译:理论上,我们研究了铁磁性金属(FM)和半导体(SC)的QuaSiperiodic级联连接中的旋转依赖性运输,其中FM和SC布置在纤维序列中。结果表明,旋转和拆卸电子对Rashba旋转轨道波矢量具有不同的带隙结构。旋转依赖的带隙结构具有分层特征和现在的自相似性。由于QuaSipiocicity,可以在带隙内观察到用于旋转或旋转电子的多谐振传动;此后,自旋极化具有多个逆转。并且还发现电导率可以来自谐振波矢量周围的一种自旋电子。这些调查可以提供设计旋转滤波器和旋转开关等设备的独特方法。

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