The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long been believed to be a phenomenon induced by spin-orbit coupling. Here, we identify an alternative mechanism to realize the intrinsic SHE through a noncollinear magnetic structure that breaks the spin rotation symmetry. No spin-orbit coupling is needed even when the scalar spin chirality vanishes, different from the case of the topological Hall effect and topological SHE reported previously. In known noncollinear antiferromagnetic compounds Mn3X (X = Ga, Ge, and Sn), for example, we indeed obtain large spin Hall conductivities based on ab initio calculations
Hall effects of electrons can be produced by an external magnetic field, spin–orbit coupling or a to...
Direct and inverse spin Hall effects lie at the heart of novel applications that utilize spins of el...
We propose a concept of non-collinear spin current, whose spin polarization varies in space even in ...
The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long...
The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long...
It is well established that the anomalous Hall effect displayed by a ferromagnet scales with its mag...
It is well established that the anomalous Hall effect displayed by a ferromagnet scales with its mag...
The spin Hall effect is commonly considered to be related to spin-orbit interaction that causes a de...
We propose a concept of noncollinear spin current, whose spin polarization varies in space even inno...
We propose a concept of noncollinear spin current, whose spin polarization varies in space even inno...
We propose a concept of noncollinear spin current, whose spin polarization varies in space even inno...
The anomalous Hall effect is investigated theoretically by employing density functional calculations...
The anomalous Hall effect is investigated theoretically by employing density functional calculations...
Noncollinear antiferromagnets, such as Mn-3 Sn and Mn-3 Ir, were recently shown to be analogous to f...
Noncollinear antiferromagnets, such as Mn-3 Sn and Mn-3 Ir, were recently shown to be analogous to f...
Hall effects of electrons can be produced by an external magnetic field, spin–orbit coupling or a to...
Direct and inverse spin Hall effects lie at the heart of novel applications that utilize spins of el...
We propose a concept of non-collinear spin current, whose spin polarization varies in space even in ...
The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long...
The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long...
It is well established that the anomalous Hall effect displayed by a ferromagnet scales with its mag...
It is well established that the anomalous Hall effect displayed by a ferromagnet scales with its mag...
The spin Hall effect is commonly considered to be related to spin-orbit interaction that causes a de...
We propose a concept of noncollinear spin current, whose spin polarization varies in space even inno...
We propose a concept of noncollinear spin current, whose spin polarization varies in space even inno...
We propose a concept of noncollinear spin current, whose spin polarization varies in space even inno...
The anomalous Hall effect is investigated theoretically by employing density functional calculations...
The anomalous Hall effect is investigated theoretically by employing density functional calculations...
Noncollinear antiferromagnets, such as Mn-3 Sn and Mn-3 Ir, were recently shown to be analogous to f...
Noncollinear antiferromagnets, such as Mn-3 Sn and Mn-3 Ir, were recently shown to be analogous to f...
Hall effects of electrons can be produced by an external magnetic field, spin–orbit coupling or a to...
Direct and inverse spin Hall effects lie at the heart of novel applications that utilize spins of el...
We propose a concept of non-collinear spin current, whose spin polarization varies in space even in ...