We show theoretically that both the intrinsic spin Hall effect (SHE) and orbital Hall effect (OHE) can arise in centrosymmetric systems through momentum-space orbital texture, which is ubiquitous even in centrosymmetric systems unlike spin texture. The OHE occurs even without spin-orbit coupling (SOC) and is converted into the SHE through SOC. The resulting spin Hall conductivity is large (comparable to that of Pt) but depends on the SOC strength in a nonmonotonic way. This mechanism is stable against orbital quenching. This work suggests a path for an ongoing search for materials with stronger SHE. It also calls for experimental efforts to probe orbital degrees of freedom in the OHE and SHE. Possible ways for experimental detection are bri...
In solids, electronic Bloch states are formed by atomic orbitals. While it is natural to expect that...
International audienceThe spin Hall effect (SHE) [1] allows for a reciprocal conversion between char...
Since their discovery, topological insulators are expected to be ideal spintronic materials owing to...
We show theoretically that both the intrinsic spin Hall effect (SHE) and orbital Hall effect (OHE) c...
A recent paper [D. Go et al., Phys. Rev. Lett. 121, 086602 (2018)] proposed that the intrinsic orbit...
We investigate the orientation dependence of the intrinsic orbital Hall effect (OHE) and spin Hall e...
We propose a mechanism of torque generation by injection of an orbital current, which we call orbita...
The orbital angular momentum is a core ingredient of orbital magnetism, spin Hall effect, giant Rash...
Material-dependent signs of the spin Hall conductivity are a useful tool to distinguish the spin Hal...
The orbital Hall effect provides an alternative means to the spin Hall effect to convert a charge cu...
The Rashba spin-orbit coupling arising from structure inversion asymmetry couples spin and momentum ...
The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
The center-of-mass motion of a quasi-two-dimensional exciton with spin-orbit coupling (SOC) in the p...
The magnetic spin Hall effect (MSHE) is an anomalous charge-to-spin conversion phenomenon which occu...
In solids, electronic Bloch states are formed by atomic orbitals. While it is natural to expect that...
International audienceThe spin Hall effect (SHE) [1] allows for a reciprocal conversion between char...
Since their discovery, topological insulators are expected to be ideal spintronic materials owing to...
We show theoretically that both the intrinsic spin Hall effect (SHE) and orbital Hall effect (OHE) c...
A recent paper [D. Go et al., Phys. Rev. Lett. 121, 086602 (2018)] proposed that the intrinsic orbit...
We investigate the orientation dependence of the intrinsic orbital Hall effect (OHE) and spin Hall e...
We propose a mechanism of torque generation by injection of an orbital current, which we call orbita...
The orbital angular momentum is a core ingredient of orbital magnetism, spin Hall effect, giant Rash...
Material-dependent signs of the spin Hall conductivity are a useful tool to distinguish the spin Hal...
The orbital Hall effect provides an alternative means to the spin Hall effect to convert a charge cu...
The Rashba spin-orbit coupling arising from structure inversion asymmetry couples spin and momentum ...
The spin Hall effect (SHE), which converts a charge current into a transverse spin current, has long...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
The center-of-mass motion of a quasi-two-dimensional exciton with spin-orbit coupling (SOC) in the p...
The magnetic spin Hall effect (MSHE) is an anomalous charge-to-spin conversion phenomenon which occu...
In solids, electronic Bloch states are formed by atomic orbitals. While it is natural to expect that...
International audienceThe spin Hall effect (SHE) [1] allows for a reciprocal conversion between char...
Since their discovery, topological insulators are expected to be ideal spintronic materials owing to...