Recently, it has been shown that the chiral magnetic insulator Cu2OSeO3hosts skyrmions in two separated pockets in temperature and magnetic field phase space. It has also been shown that the predominant stabilization mechanism for the low-temperature skyrmion (LTS) phase is via the crystalline anisotropy, opposed to temperature fluctuations that stabilize the well-established high-temperature skyrmion (HTS) phase. Here, we report on a detailed study of LTS generation by field cycling, probed by GHz spin dynamics in Cu2OSeO3. LTSs are populated via a field cycling protocol with the static magnetic field applied parallel to the ⟨100⟩ crystalline direction of plate and cuboid-shaped bulk crystals. By analyzing temperature-dependent broadband s...
Using superconducting quantum interference device magnetometry techniques, we have studied the chang...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
Insulator materials are the recent research interest in Spintronics because of the absence of joule ...
Recently, it has been shown that the chiral magnetic insulator Cu2OSeO3hosts skyrmions in two separa...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We report small-angle x-ray scattering measurements of the skyrmion lattice in two 200-nm-thick Cu...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The recent discovery of Skyrmions in Cu2OSeO3 has established a new platform to create and manipulat...
The recent discovery of magnetic skyrmion lattices initiated a surge of interest in the scientific c...
We report the discovery of attractive magnetic skyrmions and their clusters in noncentrosymmetric fe...
Magnetic skyrmions are nanosized topological spin textures stabilized by a delicate balance of magne...
Small-angle neutron scattering has been employed to study the influence of applied electric (E-) fie...
Cu2OSeO3 represents a unique example in the family of B20 cubic helimagnets with a tilted spiral and...
We present an investigation of the magnetic-field-temperature phase diagram of Cu2OSeO3 based on dc ...
Using superconducting quantum interference device magnetometry techniques, we have studied the chang...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
Insulator materials are the recent research interest in Spintronics because of the absence of joule ...
Recently, it has been shown that the chiral magnetic insulator Cu2OSeO3hosts skyrmions in two separa...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We report small-angle x-ray scattering measurements of the skyrmion lattice in two 200-nm-thick Cu...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
The recent discovery of Skyrmions in Cu2OSeO3 has established a new platform to create and manipulat...
The recent discovery of magnetic skyrmion lattices initiated a surge of interest in the scientific c...
We report the discovery of attractive magnetic skyrmions and their clusters in noncentrosymmetric fe...
Magnetic skyrmions are nanosized topological spin textures stabilized by a delicate balance of magne...
Small-angle neutron scattering has been employed to study the influence of applied electric (E-) fie...
Cu2OSeO3 represents a unique example in the family of B20 cubic helimagnets with a tilted spiral and...
We present an investigation of the magnetic-field-temperature phase diagram of Cu2OSeO3 based on dc ...
Using superconducting quantum interference device magnetometry techniques, we have studied the chang...
We report on the linear optical properties of the chiral magnet Cu2OSeO3, specifically associated wi...
Insulator materials are the recent research interest in Spintronics because of the absence of joule ...