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Universal Spin Dynamics in Quantum Wires

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arxiv 1707.07408 v2 pith:Q7QJK5H7 submitted 2017-07-24 cond-mat.mes-hall

Universal Spin Dynamics in Quantum Wires

classification cond-mat.mes-hall
keywords spinsystemscurrentsdynamicseffectspseudospinrealsingle-layer
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We discuss the universal spin dynamics in quasi one-dimensional systems including the real spin in narrow-gap semiconductors like InAs and InSb, the valley pseudospin in staggered single-layer graphene, and the combination of real spin and valley pseudospin characterizing single-layer transition metal dichalcogenides (TMDCs) such as MoS$_2$, WS$_2$, MoSe$_2$, and WSe$_2$. All these systems can be described by the same Dirac-like Hamiltonian. Spin-dependent observable effects in one of these systems thus have counterparts in each of the other systems. Effects discussed in more detail include equilibrium spin currents, current-induced spin polarization (Edelstein effect), and spin currents generated via adiabatic spin pumping. Our work also suggests that a long-debated spin-dependent correction to the position operator in single-band models should be absent.

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