The role of the crystal lattice, temperature and magnetic field for the spin structure formation in the 2D van der Waals magnet Fe5GeTe2 with magnetic ordering up to room temperature is a key open question. Using Lorentz transmission electron microscopy, we experimentally observe topological spin structures up to room temperature in the metastable pre-cooling and stable post-cooling phase of Fe5GeTe2. Over wide temperature and field ranges, skyrmionic magnetic bubbles form without preferred chirality, which is indicative of centrosymmetry. These skyrmions can be observed even in the absence of external fields. To understand the complex magnetic order in Fe5GeTe2, we compare macroscopic magnetometry characterization results with microscopic ...
International audienceMagnetic skyrmions-localized chiral spin structures-show great promise for spi...
Among two-dimensional materials, Fe3GeTe2 has come to occupy a very important place owing to its fer...
Magnetic skyrmions are nanosized magnetization whirls that exhibit topological robustness and nontri...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
Magnetic skyrmions are topological spin textures, which usually exist in noncentrosymmetric material...
Two-dimensional (2D) van der Waals (vdW) magnets have recently attracted increasing attention, as th...
Two-dimensional materials with intrinsic functionality are becoming increasingly important in explor...
The discovery of two-dimensional magnets has initiated a new field of research, exploring both funda...
Recent experiments on Fe5GeTe2 suggested the presence of a symmetry breaking of its conventional cry...
Topologically protected magnetic structures provide a robust platform for low power consumption devi...
The physics of phase transitions in two-dimensional (2D) systems underpins research in diverse field...
Topologically protected magnetic structures provide a robust platform for low power consumption devi...
Since the discovery of ferromagnetic two dimensional 2D van der Waals vdW crystals, significant ...
The emergence of long-range magnetic order in noncentrosymmetric compounds has stimulated interest i...
International audienceMagnetic skyrmions-localized chiral spin structures-show great promise for spi...
Among two-dimensional materials, Fe3GeTe2 has come to occupy a very important place owing to its fer...
Magnetic skyrmions are nanosized magnetization whirls that exhibit topological robustness and nontri...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
Magnetic skyrmions are topological spin textures, which usually exist in noncentrosymmetric material...
Two-dimensional (2D) van der Waals (vdW) magnets have recently attracted increasing attention, as th...
Two-dimensional materials with intrinsic functionality are becoming increasingly important in explor...
The discovery of two-dimensional magnets has initiated a new field of research, exploring both funda...
Recent experiments on Fe5GeTe2 suggested the presence of a symmetry breaking of its conventional cry...
Topologically protected magnetic structures provide a robust platform for low power consumption devi...
The physics of phase transitions in two-dimensional (2D) systems underpins research in diverse field...
Topologically protected magnetic structures provide a robust platform for low power consumption devi...
Since the discovery of ferromagnetic two dimensional 2D van der Waals vdW crystals, significant ...
The emergence of long-range magnetic order in noncentrosymmetric compounds has stimulated interest i...
International audienceMagnetic skyrmions-localized chiral spin structures-show great promise for spi...
Among two-dimensional materials, Fe3GeTe2 has come to occupy a very important place owing to its fer...
Magnetic skyrmions are nanosized magnetization whirls that exhibit topological robustness and nontri...