The physics of phase transitions in two-dimensional (2D) systems underpins research in diverse fields including statistical mechanics, nanomagnetism, and soft condensed matter. However, many aspects of 2D phase transitions are still not well understood, including the effects of interparticle potential, polydispersity, and particle shape. Magnetic skyrmions are chiral spin-structure quasi-particles that form two-dimensional lattices. Here, we show, by real-space imaging using in situ cryo-Lorentz transmission electron microscopy coupled with machine learning image analysis, the ordering behavior of Néel skyrmion lattices in van der Waals Fe3GeTe2. We demonstrate a distinct change in the skyrmion size distribution during field-cooling, which...
We present an in-depth study of the competition between skyrmions and a chiral spin liquid in a mode...
The chiral magnet Cu2OSeO3 hosts a Skyrmion lattice that may be equivalently described as a superpos...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
The physics of phase transitions in two-dimensional (2D) systems underpins research in diverse field...
While in 3D materials melting is a single, first-order phase transition, in 2D systems, it can also ...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Magnetic skyrmions are promising candidates as information carriers in logic or storage devices than...
Magnetic skyrmions are nanosized magnetization whirls that exhibit topological robustness and nontri...
Chiral magnets, such as MnSi, display a rich finite temperature phase diagram in an applied magnetic...
Chiral magnets, such as MnSi, display a rich finite temperature phase diagram in an applied magnetic...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
The discovery of two-dimensional magnets has initiated a new field of research, exploring both funda...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
Recently there has been substantial interest in realizations of skyrmions, in particular in quasi-tw...
We present an in-depth study of the competition between skyrmions and a chiral spin liquid in a mode...
The chiral magnet Cu2OSeO3 hosts a Skyrmion lattice that may be equivalently described as a superpos...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
The physics of phase transitions in two-dimensional (2D) systems underpins research in diverse field...
While in 3D materials melting is a single, first-order phase transition, in 2D systems, it can also ...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
Magnetic skyrmions are promising candidates as information carriers in logic or storage devices than...
Magnetic skyrmions are nanosized magnetization whirls that exhibit topological robustness and nontri...
Chiral magnets, such as MnSi, display a rich finite temperature phase diagram in an applied magnetic...
Chiral magnets, such as MnSi, display a rich finite temperature phase diagram in an applied magnetic...
Magnetic skyrmions are topologically protected nanoscale spin textures with particle-like properties...
The role of the crystal lattice, temperature and magnetic field for the spin structure formation in ...
The discovery of two-dimensional magnets has initiated a new field of research, exploring both funda...
Magnetic materials can host skyrmions, which are topologically non-trivial spin textures. In chiral ...
Recently there has been substantial interest in realizations of skyrmions, in particular in quasi-tw...
We present an in-depth study of the competition between skyrmions and a chiral spin liquid in a mode...
The chiral magnet Cu2OSeO3 hosts a Skyrmion lattice that may be equivalently described as a superpos...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...