arXiv · 2210.06602
Observation of Vector Spin Seebeck Effect in a Noncollinear Antiferromagnet
Abstract
Spintronic phenomena to date have been established in magnets with collinear moments, where the spin injection through the spin Seebeck effect (SSE) is always along the out-of-plane direction. Here, we report the observation of a vector SSE in a noncollinear antiferromagnet (AF) LuFeO$_3$, where temperature gradient along the out-of-plane and also the in-plane directions can both inject a pure spin current and generate a voltage in the heavy metal via the inverse spin Hall effect (ISHE). We show that the thermovoltages are due to the magnetization from canted spins in LuFeO$_3$. Furthermore, in contrast to the challenges of generating, manipulating and detecting spin current in collinear AFs, the vector SSE in LuFeO$_3$ is readily viable in zero magnetic field and can be controlled by a small magnetic field of about 150 Oe at room temperature. The noncollinear AFs expand new realms for exploring spin phenomena and provide a new route to low-field antiferromagnetic spin caloritronics and magnonics.
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Jinsong Xu, Jiaming He, J. -S. Zhou, Danru Qu, Ssu-Yen Huang, C. L. Chien. 2022-10-12. Observation of Vector Spin Seebeck Effect in a Noncollinear Antiferromagnet. https://doi.org/10.1103/physrevlett.129.117202
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