Magnetic skyrmions have been receiving growing attention as potential information storage and magnetic logic devices since an increasing number of materials have been identified that support skyrmion phases. Explorations of artificial frustrated systems have led to new insights into controlling and engineering new emergent frustration phenomena in frustrated and disordered systems. Here, we propose a skyrmion spin ice, giving a unifying framework for the study of geometric frustration of skyrmion crystals (SCs) in a nonfrustrated artificial geometrical lattice as a consequence of the structural confinement of skyrmions in magnetic potential wells. The emergent ice rules from the geometrically frustrated SCs highlight a novel phenomenon in t...
Artificial frustrated systems offer a playground to study the emergent properties of interacting sys...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Magnetic skyrmions are particle-like topological excitations recently discovered in chiral magnets. ...
Magnetic skyrmions have been receiving growing attention as potential information storage and magnet...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial spin ice is a two-dimensional array of nanomagnets fabricated to study geometric frustrat...
Artificial spin ice systems, namely lattices of interacting single domain ferromagnetic islands, hav...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Geometric frustration and the ice rule are two concepts that are intimately connected and widespread...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
Artificial frustrated systems offer a playground to study the emergent properties of interacting sys...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Magnetic skyrmions are particle-like topological excitations recently discovered in chiral magnets. ...
Magnetic skyrmions have been receiving growing attention as potential information storage and magnet...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial spin ice is a two-dimensional array of nanomagnets fabricated to study geometric frustrat...
Artificial spin ice systems, namely lattices of interacting single domain ferromagnetic islands, hav...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Geometric frustration and the ice rule are two concepts that are intimately connected and widespread...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
Artificial frustrated systems offer a playground to study the emergent properties of interacting sys...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Magnetic skyrmions are particle-like topological excitations recently discovered in chiral magnets. ...