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arxiv: 1607.04432 · v1 · pith:FVKNCKU6new · submitted 2016-07-15 · ❄️ cond-mat.mes-hall

Optically induced spin-dependent diffusive transport in the presence of spin-orbit interaction for all-optical magnetization reversal

classification ❄️ cond-mat.mes-hall
keywords magnetizationall-opticalreversalspin-orbitcurrentsinteractioninteractionsspin-hall
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We have considered the effect of different spin-orbit interaction mechanisms on the process of demagnetization under the influence of short-pulse lasers. All-optical magnetization reversal of perpendicularly magnetized thin films can occur if there are sufficient strong spin-Hall, skew scattering, and Rashba interactions. In the presence of spin-orbit interactions, the transient charge currents provide the generation of transverse-spin currents and accumulations, which eventually exert spin-transfer torque on the magnetization. By combining the optically excited spin-dependent diffusive transport with the spin and charge currents due to skew scattering, spin-Hall, inverse spin-Hall and Rashba interactions, into a numerical model, we demonstrate a possibility of ultra-fast all-optical magnetization reversal. This understanding provokes intriguing, more in-depth experimental studies on the role of spin-orbit interaction mechanisms in optimizing structures for all-optical magnetization reversal.

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