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Dresselhaus spin-orbit coupling induced spin-polarization and resonance-split in n-well semiconductor superlattices
Authors:Cheng-Zhi Ye  J-Q Liang
Affiliation:Institute of Theoretical Physics and Department of Physics, Shanxi University, Taiyuan 030006, China
Abstract:Using the transfer matrix method, we investigate the electron transmission over multiple-well semiconductor superlattices with Dresselhaus spin-orbit coupling in the potential-well regions. The superlattice structure enhances the effect of spin polarization in the transmission spectrum. The minibands of multiple-well superlattices for electrons with different spin can be completely separated at the low incident energy, leading to the 100% spin polarization in a broad energy windows, which may be an effective scheme for realizing spin filtering. Moreover, for the transmission over n-quantum-well, it is observed that the resonance peaks in the minibands split into n-folds or (n−1)-folds depending on the well-width and barrier-thickness, which is different from the case of tunneling through n-barrier structure.
Keywords:72  25  Dc  71  70  Ej  85  75  Mm
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