We employed small-angle neutron scattering to demonstrate that the magnetic skyrmion lattice can be realized in bulk chiral magnets as a thermodynamically stable state at temperatures much lower than the ordering temperature of the material. This is in the regime where temperature fluctuations become completely irrelevant to the formation of the topologically nontrivial magnetic texture. In this attempt we focused on the model helimagnet MnSi, in which the skyrmion lattice was previously well characterized and shown to exist only in a very narrow phase pocket close to the Curie temperature of 29.5 K. We revealed that large uniaxial distortions caused by the crystal-lattice strain in MnSi result in stabilization of the skyrmion lattice in ma...
We present a comprehensive study of chiral fluctuations in the reference helimagnet MnSi by polarize...
We present a comprehensive study of chiral fluctuations in the reference helimagnet MnSi by polarize...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are two-dimensional topologicallyprotected spin textureswith particle like proper...
Magnetic skyrmions are two-dimensional topologicallyprotected spin textureswith particle like proper...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
The archetype cubic chiral magnet MnSi is home to some of the most fascinating states in condensed m...
By employing magnetization and small angle neutron scattering measurements, we have investigated the...
Magnetic skyrmions are nanosized topologically protected spin textures with particlelike properties....
In magnets without inversion symmetry weak spin-orbit coupling leads to the formation of smooth twis...
International audienceMagnetic skyrmions are nanosized topologically protected spin textures with pa...
International audienceMagnetic skyrmions are nanosized topologically protected spin textures with pa...
International audienceMagnetic skyrmions are nanosized topologically protected spin textures with pa...
We present a comprehensive study of chiral fluctuations in the reference helimagnet MnSi by polarize...
We present a comprehensive study of chiral fluctuations in the reference helimagnet MnSi by polarize...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are two-dimensional topologicallyprotected spin textureswith particle like proper...
Magnetic skyrmions are two-dimensional topologicallyprotected spin textureswith particle like proper...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
The archetype cubic chiral magnet MnSi is home to some of the most fascinating states in condensed m...
By employing magnetization and small angle neutron scattering measurements, we have investigated the...
Magnetic skyrmions are nanosized topologically protected spin textures with particlelike properties....
In magnets without inversion symmetry weak spin-orbit coupling leads to the formation of smooth twis...
International audienceMagnetic skyrmions are nanosized topologically protected spin textures with pa...
International audienceMagnetic skyrmions are nanosized topologically protected spin textures with pa...
International audienceMagnetic skyrmions are nanosized topologically protected spin textures with pa...
We present a comprehensive study of chiral fluctuations in the reference helimagnet MnSi by polarize...
We present a comprehensive study of chiral fluctuations in the reference helimagnet MnSi by polarize...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...