The thermally driven formation and evolution of vertex domains is studied for square artificial spin ice. A self-consistent mean-field theory is used to show how domains of ground state ordering form spontaneously, and how these evolve in the presence of disorder. The role of fluctuations is studied using Monte Carlo simulations and analytical modelling. Domain wall dynamics are shown to be driven by a biasing of random fluctuations towards processes that shrink closed domains, and fluctuations within domains are shown to generate isolated small excitations, which may stabilize as the effective temperature is lowered. Domain dynamics and fluctuations are determined by interaction strengths, which are controlled by inter-element spacing. The...
Local magnetic ordering in artificial spin ices is discussed from the point of view of how geometric...
Artificial spin ice is made from a large array of patterned magnetic nanoislands designed to mimic n...
Artificial spin ices (ASI) are arrays of single domain nano-magnetic islands, arranged in geometries...
The thermally driven formation and evolution of vertex domains is studied for square artificial spin...
The thermally driven formation and evolution of vertex domains is studied for square artificial spin...
The thermally driven formation and evolution of vertex domains is studied for square artificial spin...
Artificial spin ices are athermal systems for which dynamics are induced by a time varying applied f...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
The field-induced dynamics of artificial spin ice are determined in part by interactions between mag...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
The field-induced dynamics of artificial spin ice are determined in part by interactions between mag...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
We have studied the magnetic microstates arising from single-shot thermalization processes that occu...
We have studied the magnetic microstates arising from single-shot thermalization processes that occu...
Local magnetic ordering in artificial spin ices is discussed from the point of view of how geometric...
Artificial spin ice is made from a large array of patterned magnetic nanoislands designed to mimic n...
Artificial spin ices (ASI) are arrays of single domain nano-magnetic islands, arranged in geometries...
The thermally driven formation and evolution of vertex domains is studied for square artificial spin...
The thermally driven formation and evolution of vertex domains is studied for square artificial spin...
The thermally driven formation and evolution of vertex domains is studied for square artificial spin...
Artificial spin ices are athermal systems for which dynamics are induced by a time varying applied f...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
The field-induced dynamics of artificial spin ice are determined in part by interactions between mag...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
The field-induced dynamics of artificial spin ice are determined in part by interactions between mag...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificia...
We have studied the magnetic microstates arising from single-shot thermalization processes that occu...
We have studied the magnetic microstates arising from single-shot thermalization processes that occu...
Local magnetic ordering in artificial spin ices is discussed from the point of view of how geometric...
Artificial spin ice is made from a large array of patterned magnetic nanoislands designed to mimic n...
Artificial spin ices (ASI) are arrays of single domain nano-magnetic islands, arranged in geometries...