Here, an artificial spin ice lattice is introduced that exhibits unique Ising and non-Ising behavior under specific field switching protocols because of the inclusion of coupled nanomagnets into the unit cell. In the Ising regime, a magnetic switching mechanism that generates a uni- or bimodal distribution of states dependent on the alignment of the field is demonstrated with respect to the lattice unit cell. In addition, a method for generating a plethora of randomly distributed energy states across the lattice, consisting of Ising and Landau states, is investigated through magnetic force microscopy and micromagnetic modeling. It is demonstrated that the dispersed energy distribution across the lattice is a result of the intrinsic design a...
Frustrated systems, typically characterized by competing interactions that cannot all be simultaneou...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Artificial spin ice systems, namely lattices of interacting single domain ferromagnetic islands, hav...
Magnetization dynamics in an artificial square spin-ice lattice made of Ni80Fe20 with magnetic field...
Frustration in physics is the inability of a system to simultaneously satisfy all the competing pair...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
Pre-print (óritrýnt handrit)The modification of geometry and interactions in two-dimensional magneti...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
We model the dynamics of magnetization in an artificial analogue of spin ice specializing to the cas...
The potential application of artificial spin ice in magnetic nanodevices provides a strong drive to ...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Frustrated systems, typically characterized by competing interactions that cannot all be simultaneou...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...
Spin ice is a magnetic system in which the geometry of competing interactions makes it impossible to...
Artificial spin ices are arrays of nano-scale magnetic islands correlated by the interactions of the...
Artificial spin ice is a class of arrays of interacting ferromagnetic nanoislands that are used to e...
Artificial spin ice systems, namely lattices of interacting single domain ferromagnetic islands, hav...
Magnetization dynamics in an artificial square spin-ice lattice made of Ni80Fe20 with magnetic field...
Frustration in physics is the inability of a system to simultaneously satisfy all the competing pair...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
Pre-print (óritrýnt handrit)The modification of geometry and interactions in two-dimensional magneti...
Designing and constructing model systems that embody the statistical mechanics of frustration is now...
We model the dynamics of magnetization in an artificial analogue of spin ice specializing to the cas...
The potential application of artificial spin ice in magnetic nanodevices provides a strong drive to ...
Artificial spin ices are arrays of correlated nano-scale magnetic islands that prove an excellent pl...
Frustrated systems, typically characterized by competing interactions that cannot all be simultaneou...
Reducing the dimensionality of a physical system can have a profound effect on its properties, as in...
Collective dynamics in lithographically-defined artificial spin ices offer profound insights into em...