arXiv · 1903.00910
Near-Unity Spin Hall Ratio in Ni$_x$Cu$_{1-x}$ Alloys
Abstract
We report a large spin Hall effect in the 3$d$ transition metal alloy Ni$_x$Cu$_{1-x}$ for $x\in\left\{ 0.3,0.75\right\} $, detected via the ferromagnetic resonance of a Permalloy (Py = Ni$_{80}$Fe$_{20}$) film deposited in a bilayer with the alloy. A thickness series at $x$ = 0.6, for which the alloy is paramagnetic at room temperature, allows us to determine the spin Hall ratio $θ_{\rm{SH}}\approx1$, spin diffusion length $λ_{\rm{s}}$, spin mixing conductance $G_{\uparrow\downarrow}$, and damping $α_{\rm{SML}}$ due to spin memory loss . We compare our results with similar experiments on Py/Pt bilayers measured using the same method. Ab initio band structure calculations with disorder and spin-orbit coupling suggest an intrinsic spin Hall effect in Ni$_x$Cu$_{1-x}$ alloys, although the experiments here cannot distinguish between extrinsic and intrinsic mechanisms.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mark W. Keller, Katy S. Gerace, Monika Arora, Erna Krisztina Delczeg-Czirjak, Justin M. Shaw, T. J. Silva. 2019-04-10. Near-Unity Spin Hall Ratio in Ni$_x$Cu$_{1-x}$ Alloys. https://doi.org/10.1103/physrevb.99.214411
Cite the original work for its findings. Save a collection to share your selection of sources.