We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated with the absence of inversion symmetry, the chiral crystallographic structure, and magnetic order. Through spectroscopic ellipsometry, we observe local crystal-field excitations below the charge-transfer gap. These crystal-field excitations are optically allowed due to the lack of inversion symmetry at the Cu sites. Optical polarization rotation measurements were used to study the structural chirality and magnetic order. The temperature dependence of the natural optical rotation, originating in the chiral crystal structure, provides evidence for a finite magnetoelectric effect in the helimagnetic phase. We find a large magneto-optical susceptib...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
International audienceThe lack of inversion symmetry in the crystal lattice of magnetic materials gi...
International audienceThe lack of inversion symmetry in the crystal lattice of magnetic materials gi...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
International audienceThe lack of inversion symmetry in the crystal lattice of magnetic materials gi...
International audienceThe lack of inversion symmetry in the crystal lattice of magnetic materials gi...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...