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arxiv: 1808.09959 · v1 · pith:2GPDCJ5Onew · submitted 2018-08-29 · 🪐 quant-ph · cond-mat.mes-hall· physics.app-ph

Pseudo-magnetic field and effective spin-orbit interaction for a spin-1/2 particle confined to a curved surface

classification 🪐 quant-ph cond-mat.mes-hallphysics.app-ph
keywords effectivefieldinteractionpseudo-magneticspin-orbitspinsurfaceconfined
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By considering the spin connection, we deduce the effective equation for a spin-1/2 particle confined to a curved surface with the non-relativistic limit and in the thin-layer quantization formalism. We obtain a pseudo-magnetic field and an effective spin-orbit interaction generated by the spin connection. Geometrically, the pseudo-magnetic field is proportional to the Gaussian curvature and the effective spin-orbit interaction is determined by the Weingarten curvature tensor. Particularly, we find that the pseudo-magnetic field and the effective spin-orbit interaction can be employed to separate the electrons with different spin orientations. All these results are demonstrated in two examples, a straight cylindrical surface and a bent one.

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