Localization and spin transport in honeycomb structures with spin-orbit coupling
Transfer-matrix methods are used for a tight-binding description of electron transport in graphenelike geometries in the presence of spin-orbit couplings. Application of finite-size scaling and phenomenological renormalization techniques shows that, for strong enough spin-orbit interactions and incr...
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Veröffentlicht in: | Physical review. B 2015-11, Vol.92 (20), Article 205116 |
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Sprache: | eng |
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Zusammenfassung: | Transfer-matrix methods are used for a tight-binding description of electron transport in graphenelike geometries in the presence of spin-orbit couplings. Application of finite-size scaling and phenomenological renormalization techniques shows that, for strong enough spin-orbit interactions and increasing on-site disorder, this system undergoes a metal-insulator transition characterized by the exponents v=2.71(8), [eta]=0.174(2). We show how one can extract information regarding spin polarization decay with distance from an injection edge, from the evolution of wave-function amplitudes in the transfer-matrix approach. For (relatively weak) spin-orbit coupling intensity mu , we obtain that the characteristic length As for spin-polarization decay behaves as [Lambda]s[proportional, variant] mu -2. |
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ISSN: | 1098-0121 2469-9950 1550-235X 2469-9969 |
DOI: | 10.1103/PhysRevB.92.205116 |