We report our theoretical results on spin conductivity in antiferromagnets by focusing on the role of the magnetic toroidal quadrupole (MTQ) in electron systems. The MTQ is characterized as a time-reversal-odd rank-2 polar tensor degree of freedom in electrons, which is distinct from conventional rank-1 magnetic and magnetic toroidal dipoles. Based on a microscopic $sd$ model analysis for a tetragonal system under both collinear and noncollinear antiferromagnetic orderings, we clarify that the MTQ becomes a source of an extrinsic spin conductivity even with neither a uniform magnetization nor spin-orbit coupling. We also list all the magnetic point groups to accommodate the MTQs as a primary order parameter as well as the candidate antiferr...
Local charge and spin currents are evaluated from the solutions of fully relativistic quantum mechan...
textThe development of spintronics and potential applications demands a thorough understanding of va...
Spin currents in ferromagnets afford diverse functionalities. We evaluate the extrinsic spin Hall ef...
We study the correlation between the spin configuration and the average number of conduction electro...
We theoretically investigate a nonlinear spin Hall effect in PT-symmetric antiferromagnetic metals, ...
We theoretically predict spatial separation of spin-polarized ballistic currents in transition metal...
Magnetic materials are of fundamental importance to the welfare of our society since they find use, ...
We theoretically investigate an antiferromagnetic structure in a hexagonal zigzag-chain compound Ce$...
textSpintronics is the study of mutual dependence of magnetization and electron transport, which for...
The spin Seebeck effect (SSE) refers to the generation of a spin current as a result of a temperatur...
We theoretically investigate a nonlinear spin Hall effect in $\mathcal{PT}$-symmetric antiferromagne...
© 2021 Jared Michael AshtreeThe study of molecular nanomagnets is important not only for fundamental...
The spin-orbit coupling may generate spin transverse force on moving electron spin, which gives a he...
We discuss the correspondence between the current-induced spin polarization in non-centrosymmetric m...
The spin Hall (SH) effect is a phenomenon in which the spin current flows perpendicular to an applie...
Local charge and spin currents are evaluated from the solutions of fully relativistic quantum mechan...
textThe development of spintronics and potential applications demands a thorough understanding of va...
Spin currents in ferromagnets afford diverse functionalities. We evaluate the extrinsic spin Hall ef...
We study the correlation between the spin configuration and the average number of conduction electro...
We theoretically investigate a nonlinear spin Hall effect in PT-symmetric antiferromagnetic metals, ...
We theoretically predict spatial separation of spin-polarized ballistic currents in transition metal...
Magnetic materials are of fundamental importance to the welfare of our society since they find use, ...
We theoretically investigate an antiferromagnetic structure in a hexagonal zigzag-chain compound Ce$...
textSpintronics is the study of mutual dependence of magnetization and electron transport, which for...
The spin Seebeck effect (SSE) refers to the generation of a spin current as a result of a temperatur...
We theoretically investigate a nonlinear spin Hall effect in $\mathcal{PT}$-symmetric antiferromagne...
© 2021 Jared Michael AshtreeThe study of molecular nanomagnets is important not only for fundamental...
The spin-orbit coupling may generate spin transverse force on moving electron spin, which gives a he...
We discuss the correspondence between the current-induced spin polarization in non-centrosymmetric m...
The spin Hall (SH) effect is a phenomenon in which the spin current flows perpendicular to an applie...
Local charge and spin currents are evaluated from the solutions of fully relativistic quantum mechan...
textThe development of spintronics and potential applications demands a thorough understanding of va...
Spin currents in ferromagnets afford diverse functionalities. We evaluate the extrinsic spin Hall ef...