In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular skyrmions with a reversed magnetization in their centers. While the double-twist is favorable in the center of a skyrmion, it gives rise to an excess of the energy density at the outskirt. Therefore, magnetic anisotropies are required to make skyrmions more favorable than the conical spiral in bulk materials. Using Monte Carlo simulations, we show that in magnetic nanowires unusual skyrmions with a doubly twisted core and a number of concentric helicoidal undulations (target-skyrmions) are thermodynamically stable even in absence of single-ion anisotropies. Such skyrmions are free of magnetic charges and carry a non-integer skyrmion charge s. Th...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions, topologically protected nanometric spin vortices, are being investigated extensively in v...
Magnetic skyrmions have the potential to provide solutions for low-power, high-density data storage ...
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular sky...
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular sky...
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular sky...
[EN] Magnetic skyrmions are widely attracting researchers due to fascinating physics and novel appli...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Axisymmetric magnetic strings with a fixed sense of rotation and nanometer sizes (chiral magnetic vo...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions, topologically protected nanometric spin vortices, are being investigated extensively in v...
Magnetic skyrmions have the potential to provide solutions for low-power, high-density data storage ...
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular sky...
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular sky...
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular sky...
[EN] Magnetic skyrmions are widely attracting researchers due to fascinating physics and novel appli...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are particlelike topological excitations that have recently generated much intere...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Axisymmetric magnetic strings with a fixed sense of rotation and nanometer sizes (chiral magnetic vo...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Skyrmions, topologically protected nanometric spin vortices, are being investigated extensively in v...
Magnetic skyrmions have the potential to provide solutions for low-power, high-density data storage ...