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Surprisingly large inverse spin Hall effect and systematic variation of spin-orbit coupling with d-orbital filling in 3d transition metals

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arxiv 1410.1590 v1 pith:3JV7LZ2W submitted 2014-10-06 cond-mat.mtrl-sci

Surprisingly large inverse spin Hall effect and systematic variation of spin-orbit coupling with d-orbital filling in 3d transition metals

classification cond-mat.mtrl-sci
keywords metalsspinhallcouplingd-orbitalfillingspin-orbittransition
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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It is generally believed that spin-orbit coupling (SOC) follows Z4 (atomic number) dependence and becomes significant only in heavy elements. Consequently, SOC in 3d transition metals should be negligible given their small Z. Using dynamic spin pumping of Y3Fe5O12-based structures, we uncover a systematic evolution of spin Hall angle with d-orbital filling in a series of 3d metals, reminiscent of behavior observed in 5d metals. In particular, Cr and Ni show very large spin Hall angle (half of that for Pt), indicating that d-orbital filling rather than Z plays a dominant role in spin Hall effect (SHE) in 3d metals. This result enriches our understanding of SHE and broadens the scope of materials available for exploring the rich phenomena enabled by SOC as well as presenting a guidepost for testing theoretical models of spin-orbit coupling in transition metals.

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