arXiv · 1810.01227
Spin-dependent (inverse) spin Hall effect in Co$_{60}$Fe$_{20}$B$_{20}$
Abstract
In ferromagnetic metals, the interconversion of spin and charge currents via the spin Hall effect and its inverse can depend on the angle between the ferromagnets magnetization and the spin current polarization direction. Here, such a spin-dependent (inverse) spin Hall effect is found in the ferromagnetic alloy Co$_{60}$Fe$_{20}$B$_{20}$. In a nonlocal magnon transport experiment, Co$_{60}$Fe$_{20}$B$_{20}$ is used to both excite and detect magnonic spin currents flowing in the ferrimagnetic insulator Y$_{3}$Fe$_{5}$O$_{12}$. We find that the signal amplitude is significantly modulated by tuning the direction of the Co$_{60}$Fe$_{20}$B$_{20}$ magnetization. We design a sample structure that completely prevents direct magnonic coupling between the ferromagnets. Thus, we can identify unambiguously an intrinsic electronic origin of the observed effect.
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Joel Cramer, Andrew Ross, Samridh Jaiswal, Lorenzo Baldrati, Romain Lebrun, Mathias Kläui. 2019-01-08. Spin-dependent (inverse) spin Hall effect in Co$_{60}$Fe$_{20}$B$_{20}$. https://doi.org/10.1103/physrevb.99.104414
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