Lattice skyrmion magnification iterative Skyrmion metastable cu1 Metastable skyrmion phase diagram. (a) the magnetic phase diagram of
The skyrmion lattice with its tube-like structure in the third
Lattice skyrmion
Phase diagram for skyrmion formation. the shaded area illustrates
Magnetic-field-induced structural transition of metastable skyrmionTopological phase diagrams of a skyrmion msh system. topological phase Optical skyrmion lattice in evanescent electromagnetic fieldsUnwinding of a skyrmion lattice by magnetic monopoles.
Skyrmion phase diagram of bulk materials. stabilization of the skyrmionOrientation of the skyrmion lattice as a function of the field Calculated electric field distribution of the optical skyrmion latticeSkyrmion lattice rearrangement polarizing induced microscopy.
![Evolution of ρ T HE across the phase transition between isolated](https://i2.wp.com/www.researchgate.net/publication/351685390/figure/fig2/AS:1025021019447298@1621395463613/Evolution-of-r-T-HE-across-the-phase-transition-between-isolated-skyrmions-and-a.png)
Illustrates shaded skyrmion skyrmions persistent combinations
Lattice skyrmionFigure 3 from field-induced pseudo-skyrmion phase in the Skyrmion lattice [image]Magnification of the real-space image of the skyrmion lattice obtained.
The skyrmion lattice phase. (a) the magnetic field-temperature phaseFigure 1 from exploration of the helimagnetic and skyrmion lattice (pdf) realization of ground-state artificial skyrmion lattices at roomSkyrmion stabilization bulk occurs.
![Orientation of the skyrmion lattice as a function of the field](https://i2.wp.com/www.researchgate.net/profile/Robert-Georgii/publication/328704684/figure/fig2/AS:699591943024645@1543807125334/Orientation-of-the-skyrmion-lattice-as-a-function-of-the-field-direction-as-parametrized.png)
Skyrmion disordered stabilized magnet chiral frustration conventional skx equilibrium
Skyrmion lattice with a giant topological hall effect in a frustratedThe skyrmion lattice with its tube-like structure in the third (a-c) elementary skyrmion at the points 1, 2, 3 on the phase diagramSkyrmion phase.
Skyrmion behaviors phasePhoto-induced skyrmion lattice rearrangement. (a-e) polarizing optical Main characteristics of the response of the skyrmion lattice phase in(a)(?, ve)-phase diagram for the different behaviors of skyrmion with a.
![Calculated electric field distribution of the optical skyrmion lattice](https://i2.wp.com/www.researchgate.net/publication/371871695/figure/fig3/AS:11431281170602851@1687836147975/Calculated-electric-field-distribution-of-the-optical-skyrmion-lattice-when-changing-the.png)
Disordered skyrmion phase stabilized by magnetic frustration in a
Micromagnetic simulations. (a) skyrmion phase diagram as a function ofTopological unwinding of a skyrmion lattice by magnetic monopoles / mlz Skyrmion lattice orientation field parametrizedUk skyrmion project.
Representative discoveries of skyrmions in single‐phase materials: (aMetastable skyrmion lattice realized by magnetic- and electric-field Evolution of ρ t he across the phase transition between isolatedSpin configurations in the (a) axisymmetric skyrmion lattice phase at.
![The skyrmion lattice phase. (a) The magnetic field-temperature phase](https://i2.wp.com/www.researchgate.net/publication/354618771/figure/fig1/AS:1068528635486208@1631768487992/The-skyrmion-lattice-phase-a-The-magnetic-field-temperature-phase-diagram-of-Fe-Gd_Q640.jpg)
Skyrmion diagrams nominal cofeb thickness
Skyrmion lattice metastable structural induced calculated micromagneticSkyrmion lattice. each unit cell possesses a single central s=2 Skyrmion phase diagrams. the skyrmion phase diagrams as a function ofSkyrmion lattice in a chiral magnet.
Skyrmion artificial lattices hysteresis magnetic measured schematic diagramThe skyrmion lattice with its tube-like structure in the third .
![Topological unwinding of a Skyrmion lattice by magnetic monopoles / MLZ](https://i2.wp.com/mlz-garching.de/media/fig_1-new.jpg)
![Photo-induced skyrmion lattice rearrangement. (a-e) Polarizing optical](https://i2.wp.com/www.researchgate.net/profile/Ivan-Smalyukh/publication/336638689/figure/fig5/AS:815198931791873@1571369979695/Photo-induced-skyrmion-lattice-rearrangement-a-e-Polarizing-optical-microscopy-images.jpg)
![Metastable skyrmion phase diagram. (A) The magnetic phase diagram of](https://i2.wp.com/www.researchgate.net/publication/348078309/figure/fig2/AS:975013414981634@1609472721679/Metastable-skyrmion-phase-diagram-A-The-magnetic-phase-diagram-of-the-Cu1-xZnx2OSeO3.jpg)
![UK Skyrmion Project](https://i2.wp.com/warwick.ac.uk/fac/sci/physics/research/condensedmatt/supermag/research/skyrmions/birchcommunphys.4.175.2021.jpg)
![Magnification of the real-space image of the skyrmion lattice obtained](https://i2.wp.com/www.researchgate.net/publication/322639923/figure/fig5/AS:585610825842688@1516631909345/Magnification-of-the-real-space-image-of-the-skyrmion-lattice-obtained-by-the-iterative.png)
![Spin configurations in the (a) axisymmetric skyrmion lattice phase at](https://i2.wp.com/www.researchgate.net/publication/323770947/figure/fig1/AS:1132481554202626@1647016051228/Spin-configurations-in-the-a-axisymmetric-skyrmion-lattice-phase-at-e0-and-b.jpg)