The properties of natural and artificial assemblies of interacting elements, ranging from Quarks to Galaxies, are at the heart of Physics. The collective response and dynamics of such assemblies are dictated by the intrinsic dynamical properties of the building blocks, the nature of their interactions and topological constraints. Here we report on the relaxation dynamics of the magnetization of artificial assemblies of mesoscopic spins. In our model nano-magnetic system - square artificial spin ice - we are able to control the geometrical arrangement and interaction strength between the magnetically interacting building blocks by means of nano-lithography. Using time resolved magnetometry we show that the relaxation process can be described...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
The properties of natural and artificial assemblies of interacting elements, ranging from Quarks to ...
Artificial Spin Ice (ASI), consisting of a two dimensional array of nanoscale magnetic elements, pro...
Artificial Spin Ice (ASI), consisting of a two dimensional array of nanoscale magnetic elements, pro...
Mesoscopic spin systems consist of an ensemble of lithographically patterned nanomagnetic elements -...
Mesoscopic spin systems consist of an ensemble of lithographically patterned nanomagnetic elements -...
Artificial spin ice is a two-dimensional array of nanomagnets fabricated to study geometric frustrat...
Artificial Spin Ice (ASI), consisting of a two dimensional array of nanoscale magnetic elements, pro...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
We have studied the temperature and magnetic field dependence of the total magnetic moment of large-...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
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...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
The properties of natural and artificial assemblies of interacting elements, ranging from Quarks to ...
Artificial Spin Ice (ASI), consisting of a two dimensional array of nanoscale magnetic elements, pro...
Artificial Spin Ice (ASI), consisting of a two dimensional array of nanoscale magnetic elements, pro...
Mesoscopic spin systems consist of an ensemble of lithographically patterned nanomagnetic elements -...
Mesoscopic spin systems consist of an ensemble of lithographically patterned nanomagnetic elements -...
Artificial spin ice is a two-dimensional array of nanomagnets fabricated to study geometric frustrat...
Artificial Spin Ice (ASI), consisting of a two dimensional array of nanoscale magnetic elements, pro...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
We have studied the temperature and magnetic field dependence of the total magnetic moment of large-...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
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...
Systems of interacting nanomagnets known as artificial spin ice 1-4 have allowed the design, realiza...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...