Artificial spin ices are frustrated magnetic nanostructures where single domain nanobars act as macrosized spins. In connected kagome artificial spin ice arrays, reversal occurs along one-dimensional chains by propagation of ferromagnetic domain walls through Y-shaped vertices. Both the vertices and the walls are complex chiral objects with well-defined topological edge-charges. At room temperature, it is established that the topological edge-charges determine the exact switching reversal path taken. However, magnetic reversal at low temperatures has received much less attention and how these chiral objects interact at reduced temperature is unknown. In this study we use magnetic force microscopy to image the magnetic reversal process at lo...
Artificial spin ice, made up of planar nanostructured arrays of simple ferromagnetic bars, is a play...
International audienceWe experimentally investigate magnetic frustration effects in thermally active...
Arrays of non-interacting nanomagnets are widespread in data storage and processing. As current tech...
Artificial spin ice refers to an array of elongated ferromagnetic elements, providing a fascinating ...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
Artificial kagome spin ice exhibits exotic magnetic correlations driven by a combination of geometri...
Artificial magnetic spin-ice nanostructures provide an ideal platform for the observation of magneti...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Artificial spin ice, made up of planar nanostructured arrays of simple ferromagnetic bars, is a play...
International audienceWe experimentally investigate magnetic frustration effects in thermally active...
Arrays of non-interacting nanomagnets are widespread in data storage and processing. As current tech...
Artificial spin ice refers to an array of elongated ferromagnetic elements, providing a fascinating ...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
Artificial kagome spin ice exhibits exotic magnetic correlations driven by a combination of geometri...
Artificial magnetic spin-ice nanostructures provide an ideal platform for the observation of magneti...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Artificial spin ice, made up of planar nanostructured arrays of simple ferromagnetic bars, is a play...
International audienceWe experimentally investigate magnetic frustration effects in thermally active...
Arrays of non-interacting nanomagnets are widespread in data storage and processing. As current tech...