Artificial magnetic spin-ice nanostructures provide an ideal platform for the observation of magnetic monopoles. The formation of a magnetic monopole is governed by the motion of a magnetic charge carrier via the propagation of domain walls (DWs) in a lattice. To date, most experiments have been on the static visualization of DW propagation in the lattice. In this paper, we report on the low field dynamics of DW in a unit spin-ice structure measured by magnetoresistance changes. Our results show that reversible DW propagation can be initiated within the spin-ice basis. The initial magnetization configuration of the unit structure strongly influences the direction of DW motion in the branches. Single or multiple domain wall nucleation can be...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Magnetricity, the magnetic equivalent of electricity, was recently verified experimentally for the ...
Artificial magnetic spin-ice nanostructures provide an ideal platform for the observation of magneti...
Domain wall propagation dynamics has been studied in nanostructured artificial kagome spin-ice struc...
While finding the elementary magnetic monopole seems not an easy task, recently, scientists have com...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Artificial spin ices are frustrated magnetic nanostructures where single domain nanobars act as macr...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Breakdown of the ice rule in artificial spin-ice nanostructures results in magnetic monopole defects...
A review of geometrically confined 180° head-to-head domain walls is presented. The spin structures ...
We systematically investigate magnetic reversal of permalloy islands in a square spin-ice geometry w...
Magnetic monopoles, proposed as elementary particles that act as isolated magnetic south and north p...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Magnetic monopoles, proposed as elementary particles that act as isolated magnetic south and north p...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Magnetricity, the magnetic equivalent of electricity, was recently verified experimentally for the ...
Artificial magnetic spin-ice nanostructures provide an ideal platform for the observation of magneti...
Domain wall propagation dynamics has been studied in nanostructured artificial kagome spin-ice struc...
While finding the elementary magnetic monopole seems not an easy task, recently, scientists have com...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Artificial spin ices are frustrated magnetic nanostructures where single domain nanobars act as macr...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Breakdown of the ice rule in artificial spin-ice nanostructures results in magnetic monopole defects...
A review of geometrically confined 180° head-to-head domain walls is presented. The spin structures ...
We systematically investigate magnetic reversal of permalloy islands in a square spin-ice geometry w...
Magnetic monopoles, proposed as elementary particles that act as isolated magnetic south and north p...
For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ...
Magnetic monopoles, proposed as elementary particles that act as isolated magnetic south and north p...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
Magnetricity, the magnetic equivalent of electricity, was recently verified experimentally for the ...