We report the discovery of attractive magnetic skyrmions and their clusters in noncentrosymmetric ferromagnets. These three-dimensional solitons have been predicted to exist in the cone phase of chiral ferromagnets [J. Phys: Condens. Matter 28, 35LT01 (2016)] and are fundamentally different from the more common repulsive axisymmetric skyrmions that occur in the magnetically saturated state. We present real-space images of these skyrmion clusters in thin (∼70 nm) single crystal samples of Cu2OSeO3 taken using transmission electron microscopy and develop a phenomenological theory describing this type of skyrmion
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
We report the discovery of attractive magnetic skyrmions and their clusters in noncentrosymmetric fe...
We report the discovery of attractive magnetic skyrmions and their clusters in non-centrosymmetric f...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
Abstract Skyrmions in confined geometries have been a subject of increasing interest due to the differ...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
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 study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...
We report the discovery of attractive magnetic skyrmions and their clusters in noncentrosymmetric fe...
We report the discovery of attractive magnetic skyrmions and their clusters in non-centrosymmetric f...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
We introduce a new class of isolated three-dimensional skyrmion that can occur within the cone phase...
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex no...
Abstract Skyrmions in confined geometries have been a subject of increasing interest due to the differ...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
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 study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
We study the high-temperature phase diagram of the chiral magnetic insulator Cu2OSeO3 by measuring t...
Micromagnetic calculations demonstrate a peculiar evolution of non-axisymmetric skyrmions driven by ...