paper

Strong interfacial exchange field in a heavy metal/ferromagnetic insulator system determined by spin Hall magnetoresistance

arXiv:2004.12009 · doi:10.1021/acs.nanolett.0c02834

Abstract

Spin-dependent transport at heavy metal/magnetic insulator interfaces is at the origin of many phenomena at the forefront of spintronics research. A proper quantification of the different interfacial spin conductances is crucial for many applications. Here, we report the first measurement of the spin Hall magnetoresistance (SMR) of Pt on a purely ferromagnetic insulator (EuS). We perform SMR measurements in a wide range of temperatures and fit the results by using a microscopic model. From this fitting procedure we obtain the temperature dependence of the spin conductances (, and ), disentangling the contribution of field-like torque (), damping-like torque (), and spin-flip scattering (). An interfacial exchange field of the order of 1 meV acting upon the conduction electrons of Pt can be estimated from , which is at least three times larger than below the Curie temperature. Our work provides an easy method to quantify this interfacial spin-splitting field, which play a key role in emerging fields such as superconducting spintronics and caloritronics, and topological quantum computation.

15 pages, 3 figures, Supporting information included at the end