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Gate-tunable spin Hall effect in an all-light-element heterostructure: graphene with copper oxide

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arxiv 2305.01787 v2 pith:TRQZU4C3 submitted 2023-05-02 cond-mat.mes-hall

Gate-tunable spin Hall effect in an all-light-element heterostructure: graphene with copper oxide

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

Graphene is a light material for long-distance spin transport due to its low spin-orbit coupling, which at the same time is the main drawback to exhibit a sizeable spin Hall effect. Decoration by light atoms has been predicted to enhance the spin Hall angle in graphene while retaining a long spin diffusion length. Here, we combine a light metal oxide (oxidized Cu) with graphene to induce the spin Hall effect. Its efficiency, given by the product of the spin Hall angle and the spin diffusion length, can be tuned with the Fermi level position, exhibiting a maximum (1.8 $\pm$ 0.6 nm at 100 K) around the charge neutrality point. This all-light-element heterostructure shows a larger efficiency than conventional spin Hall materials. The gate-tunable spin Hall effect is observed up to room temperature. Our experimental demonstration provides an efficient spin-to-charge conversion system free from heavy metals and compatible with large-scale fabrication.

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