The orbital Hall effect has been theoretically predicted but its direct observation is a challenge. Here, we report the magneto-optical detection of current-induced orbital accumulation at the surface of a light 3$d$ transition metal, Cr. The orbital polarization is in-plane, transverse to the current direction, and scales linearly with current density, consistent with the orbital Hall effect. Comparing the thickness-dependent magneto-optical measurements with $\textit{ab initio}$ calculations, we estimate an orbital diffusion length in Cr of $6.6\pm 0.6$ nm.Comment: 6 pages, 5 figure
The orbital Hall effect (OHE) designates the generation of a charge-neutral flow of orbital angular ...
Recent progress in orbitronics reveals the possibility of using orbital current as an information ca...
Twisted moiré materials have opened up a new platform for realizing the quantum anomalous Hall (QAH)...
Recently orbital Hall current has attracted attention as an alternative method to switch the magneti...
The orbital angular momentum is a core ingredient of orbital magnetism, spin Hall effect, giant Rash...
The orbital Hall effect provides an alternative means to the spin Hall effect to convert a charge cu...
We report the observation of a unidirectional magnetoresistance (UMR) that originates from the noneq...
A recent paper [D. Go et al., Phys. Rev. Lett. 121, 086602 (2018)] proposed that the intrinsic orbit...
Phosphorene, a monolayer of black phosphorus, is a two-dimensional material that lacks a multivalley...
Chromium triiodide is an intrinsically magnetic van der Waals material down to the single-layer limi...
We experimentally study the dynamical behavior of the light-induced anomalous Hall effect in a three...
Atomic-level defects in van der Waals (vdW) materials are essential building blocks for quantum tech...
While current-induced torque by orbital current has been experimentally found in various structures,...
A monolayer of CrI3 has an amazing ferromagnetic ground-state. In this work, we calculate band struc...
We show theoretically that both the intrinsic spin Hall effect (SHE) and orbital Hall effect (OHE) c...
The orbital Hall effect (OHE) designates the generation of a charge-neutral flow of orbital angular ...
Recent progress in orbitronics reveals the possibility of using orbital current as an information ca...
Twisted moiré materials have opened up a new platform for realizing the quantum anomalous Hall (QAH)...
Recently orbital Hall current has attracted attention as an alternative method to switch the magneti...
The orbital angular momentum is a core ingredient of orbital magnetism, spin Hall effect, giant Rash...
The orbital Hall effect provides an alternative means to the spin Hall effect to convert a charge cu...
We report the observation of a unidirectional magnetoresistance (UMR) that originates from the noneq...
A recent paper [D. Go et al., Phys. Rev. Lett. 121, 086602 (2018)] proposed that the intrinsic orbit...
Phosphorene, a monolayer of black phosphorus, is a two-dimensional material that lacks a multivalley...
Chromium triiodide is an intrinsically magnetic van der Waals material down to the single-layer limi...
We experimentally study the dynamical behavior of the light-induced anomalous Hall effect in a three...
Atomic-level defects in van der Waals (vdW) materials are essential building blocks for quantum tech...
While current-induced torque by orbital current has been experimentally found in various structures,...
A monolayer of CrI3 has an amazing ferromagnetic ground-state. In this work, we calculate band struc...
We show theoretically that both the intrinsic spin Hall effect (SHE) and orbital Hall effect (OHE) c...
The orbital Hall effect (OHE) designates the generation of a charge-neutral flow of orbital angular ...
Recent progress in orbitronics reveals the possibility of using orbital current as an information ca...
Twisted moiré materials have opened up a new platform for realizing the quantum anomalous Hall (QAH)...