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Quantum transport of pseudospin-polarized Dirac fermions in gapped graphene nanostructures

机译:伪自旋极化的狄拉克费米子在有缝石墨烯纳米结构中的量子输运。

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摘要

We investigate the unusual features of the quantum transport in gapped monolayer graphene, which is in a pseudospin symmetry-broken state with a net perpendicular pseudomagnetization. Using these pseudoferromagnets (PFs), we propose a perfect pseudospin valve effect that can be used for realizing pseudospintronics in monolayer graphene. The peculiarity of the associated effects of pseudospin injection and pseudospin accumulation are also studied. We further demonstrate the determining effect of the sublattice pseudospin degree of freedom on Andreev reflection and the associated proximity effect in hybrid structures of PFs and a superconductor in S/PF and PF/S/PF geometries. In particular, we find a peculiar Andreev reflection that is associated with an inversion of the z component of the carriers pseudospin vector. Our results show that the gapped normal graphene behaves like a ferromagnetic graphene and the effect of the pseudospin degree of freedom in gapped graphene is as important as the spin in a ferromagnetic graphene.
机译:我们研究了带隙单层石墨烯中的量子输运的不寻常特征,该现象处于伪自旋对称破碎状态,具有垂直的垂直伪磁化。使用这些伪铁磁体(PF),我们提出了一种理想的伪自旋阀效应,可用于实现单层石墨烯中的伪自旋电子学。还研究了假纺丝注射和假纺丝积累的相关效应的特殊性。我们进一步论证了亚晶格伪自旋自由度对Andreev反射的确定作用以及在PF和S / PF和PF / S / PF几何结构中的超导体的混合结构中的相关邻近效应。特别是,我们发现了一个奇特的Andreev反射,该反射与载波伪自旋向量的z分量的倒置有关。我们的结果表明,有间隙的正常石墨烯的行为类似于铁磁石墨烯,并且在有间隙的石墨烯中伪自旋自由度的影响与在铁磁石墨烯中的自旋一样重要。

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