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Enhancement of spin-orbit coupling and magnetic scattering in hydrogenated graphene

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arxiv 2110.04477 v1 pith:2EMH3AVN submitted 2021-10-09 cond-mat.mes-hall

Enhancement of spin-orbit coupling and magnetic scattering in hydrogenated graphene

classification cond-mat.mes-hall
keywords graphenehydrogenatedscatteringcouplingexistencehydrogenmagneticspin-orbit
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Spin-orbit coupling (SOC) can provide essential tools to manipulate electron spins in two-dimensional materials like graphene, which is of great interest for both fundamental physics and spintronics application. In this paper, we report the low-field magnetotransport of in situ hydrogenated graphene where hydrogen atoms are attached to the graphene surface in continuous low temperature and vacuum environment. Transition from weak localization to weak antilocalization with increasing hydrogen adatom density is observed, indicating enhancing Bychkov-Rashba-type SOC in a mirror symmetry broken system. From the low-temperature saturation of phase breaking scattering rate, the existence of spin-flip scattering is identified, which corroborates the existence of magnetic moments in hydrogenated graphene.

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