Dependence of nonlocal Gilbert damping on the ferromagnetic layer type in FM/Cu/Pt heterostructures

Abstract

We have measured the size effect in nonlocal Gilbert relaxation rate in FM(tFM) / Cu (5nm) [/ Pt (2nm)] / Al(2nm) heterostructures, FM = \ Ni81Fe19, Co60Fe20B20, pure Co\. Common behavior is observed for three FM layers, where the additional relaxation obeys both a strict inverse power law dependence G =K \:tn, n=-1.040.06 and a similar magnitude K=22440 Mhz·nm. As the tested FM layers span an order of magnitude in spin diffusion length λSDL, the results are in support of spin diffusion, rather than nonlocal resistivity, as the origin of the effect.

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