We investigate spin dynamics of microstates in artificial spin ice (ASI) in Ni81Fe19 nanomagnets arranged in an interconnected kagome lattice using microfocus Brillouin light scattering, broadband ferromagnetic resonance, magnetic force microscopy, x-ray photoemission electron microscopy, and simulations. We experimentally reconfigure microstates in ASI using a 2D vector field protocol and apply microwave-assisted switching to intentionally trigger reversal. Our work is key for the creation of avalanches inside the kagome ASI and reprogrammable magnonics based on ASIs
Artificial spin systems consist of mesoscopic single domain magnetic elements, typically arranged on...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
We theoretically and experimentally investigate magnetization reversal and associated spin-wave dyna...
We report broadband spin-wave spectroscopy on kagome artificial spin ice (ASI) made of large arrays ...
Artificial spin ice systems have seen burgeoning interest due to their intriguing physics and potent...
Artificial spin ice structures which are networks of coupled nanomagnets arranged on different latti...
Artificial spin ices are ensembles of geometrically arranged interacting nanomagnets that have shown...
Ferromagnetic resonance (FMR) is performed on kagome artificial spin ice (ASI) formed of disconnecte...
4 pages, 4 figures, 1 tableInternational audienceMagnetic frustration effects in artificial kagome a...
Artificial spin ice (ASI) is a metamaterial comprised of magnetic nanoislands arranged in a square o...
Artificial spin ices are frustrated magnetic nanostructures where single domain nanobars act as macr...
Arrays of non-interacting nanomagnets are widespread in data storage and processing. As current tech...
Strongly-interacting nanomagnetic arrays are finding increasing use as model host systems for reconf...
Artificial kagome spin ice exhibits exotic magnetic correlations driven by a combination of geometri...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Artificial spin systems consist of mesoscopic single domain magnetic elements, typically arranged on...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
We theoretically and experimentally investigate magnetization reversal and associated spin-wave dyna...
We report broadband spin-wave spectroscopy on kagome artificial spin ice (ASI) made of large arrays ...
Artificial spin ice systems have seen burgeoning interest due to their intriguing physics and potent...
Artificial spin ice structures which are networks of coupled nanomagnets arranged on different latti...
Artificial spin ices are ensembles of geometrically arranged interacting nanomagnets that have shown...
Ferromagnetic resonance (FMR) is performed on kagome artificial spin ice (ASI) formed of disconnecte...
4 pages, 4 figures, 1 tableInternational audienceMagnetic frustration effects in artificial kagome a...
Artificial spin ice (ASI) is a metamaterial comprised of magnetic nanoislands arranged in a square o...
Artificial spin ices are frustrated magnetic nanostructures where single domain nanobars act as macr...
Arrays of non-interacting nanomagnets are widespread in data storage and processing. As current tech...
Strongly-interacting nanomagnetic arrays are finding increasing use as model host systems for reconf...
Artificial kagome spin ice exhibits exotic magnetic correlations driven by a combination of geometri...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Artificial spin systems consist of mesoscopic single domain magnetic elements, typically arranged on...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
We theoretically and experimentally investigate magnetization reversal and associated spin-wave dyna...