The research leading to these results has received funding from the European Community’s Seventh Framework Programme (FP7/2007-2013) under grant agreement no. 290605 (COFUND: PSI-FELLOW) and from the EPSRC (grant EP/J01060X).Materials with interacting magnetic degrees of freedom display a rich variety of magnetic behaviour that can lead to novel collective equilibrium and out-of-equilibrium phenomena. In equilibrium, thermodynamic phases appear with the associated phase transitions providing a characteristic signature of the underlying collective behaviour. Here we create a thermally active artificial kagome spin ice that is made up of a large array of dipolar interacting nanomagnets and undergoes phase transitions predicted by microscopic ...
Artificial ice systems have been designed to replicate paradigmatic phenomena observed in frustrated...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
Frustration in physics is the inability of a system to simultaneously satisfy all the competing pair...
Materials with interacting magnetic degrees of freedom display a rich variety of magnetic behaviour ...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial kagome spin ice exhibits exotic magnetic correlations driven by a combination of geometri...
Artificial spin systems consist of mesoscopic single domain magnetic elements, typically arranged on...
This work was funded by the Swiss National Science Foundation (SNSF project grants 200021-155917, 20...
Achieving thermal equilibrium in two-dimensional lattices of interacting nanomagnets has been a key ...
International audienceWe experimentally investigate magnetic frustration effects in thermally active...
Frustrated systems, typically characterized by competing interactions that cannot all be simultaneou...
10 pagesUsing magnetization, specific heat and neutron scattering measurements, as well as exact cal...
Geometrical frustration occurs when entities in a system, subject to given lattice constraints, are ...
This work was carried out within the framework of a Max-Planck independent research group on strongl...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Artificial ice systems have been designed to replicate paradigmatic phenomena observed in frustrated...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
Frustration in physics is the inability of a system to simultaneously satisfy all the competing pair...
Materials with interacting magnetic degrees of freedom display a rich variety of magnetic behaviour ...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial kagome spin ice exhibits exotic magnetic correlations driven by a combination of geometri...
Artificial spin systems consist of mesoscopic single domain magnetic elements, typically arranged on...
This work was funded by the Swiss National Science Foundation (SNSF project grants 200021-155917, 20...
Achieving thermal equilibrium in two-dimensional lattices of interacting nanomagnets has been a key ...
International audienceWe experimentally investigate magnetic frustration effects in thermally active...
Frustrated systems, typically characterized by competing interactions that cannot all be simultaneou...
10 pagesUsing magnetization, specific heat and neutron scattering measurements, as well as exact cal...
Geometrical frustration occurs when entities in a system, subject to given lattice constraints, are ...
This work was carried out within the framework of a Max-Planck independent research group on strongl...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Artificial ice systems have been designed to replicate paradigmatic phenomena observed in frustrated...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
Frustration in physics is the inability of a system to simultaneously satisfy all the competing pair...