Skyrmions are topologically protected field configurations with particle-like properties that play an important role in various fields of science. Recently, skyrmions have been observed to be stabilized by an external magnetic field in bulk magnets. Here, we describe a two-dimensional square lattice of skyrmions on the atomic length scale as the magnetic ground state of a hexagonal Fe film of one-atomic-layer thickness on the Ir(111) surface. Using spin-polarized scanning tunnelling microscopy we can directly image this non-collinear spin texture in real space on the atomic scale and demonstrate that it is incommensurate to the underlying atomic lattice. With the aid of first-principles calculations, we develop a spin model on a discrete la...
From the perspective of surface science, only the topmost atomic layers usually exhibit physical pro...
Magnetic skyrmions have captivated physicists due to their topological nature and novel physical pro...
Due to the tiny size of magnetic skyrmions with their unique topological robustness [1], they hold t...
Research on magnetic systems with broken inversion symmetry has been stimulated by the experimental ...
Skyrmions are prospected as the potential future of data storage due to their topologically protecte...
Spin-resolved scanning tunneling microscopy is used to reveal a commensurate hexagonal nanoskyrmion ...
peer reviewedWe explore the interplay between topology and eigenmodes by changing the stabilizing me...
We predict the occurrence of a novel type of atomic-scale spin lattice in an Fe monolayer on the Ir(...
We determined the parameters of a classical spin Hamiltonian describing an Fe monolayer on Pd(111) s...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
Spin-polarized scanning tunneling microscopy has been applied to study non-collinear spin textures o...
Magnetic skyrmions are prime candidates as information carriers for spintronic devices due to their ...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
From the perspective of surface science, only the topmost atomic layers usually exhibit physical pro...
Magnetic skyrmions have captivated physicists due to their topological nature and novel physical pro...
Due to the tiny size of magnetic skyrmions with their unique topological robustness [1], they hold t...
Research on magnetic systems with broken inversion symmetry has been stimulated by the experimental ...
Skyrmions are prospected as the potential future of data storage due to their topologically protecte...
Spin-resolved scanning tunneling microscopy is used to reveal a commensurate hexagonal nanoskyrmion ...
peer reviewedWe explore the interplay between topology and eigenmodes by changing the stabilizing me...
We predict the occurrence of a novel type of atomic-scale spin lattice in an Fe monolayer on the Ir(...
We determined the parameters of a classical spin Hamiltonian describing an Fe monolayer on Pd(111) s...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generat...
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions,...
Spin-polarized scanning tunneling microscopy has been applied to study non-collinear spin textures o...
Magnetic skyrmions are prime candidates as information carriers for spintronic devices due to their ...
We report the most precise observations to date concerning the spin structure of magnetic skyrmions ...
From the perspective of surface science, only the topmost atomic layers usually exhibit physical pro...
Magnetic skyrmions have captivated physicists due to their topological nature and novel physical pro...
Due to the tiny size of magnetic skyrmions with their unique topological robustness [1], they hold t...