We revisit the basic variational formulation of the minimization problem associated with the micromagnetic energy, with an emphasis on the treatment of the stray field contribution to the energy, which is intrinsically nonlocal. Under minimal assumptions, we establish three distinct variational principles for the stray field energy: a minimax principle involving magnetic scalar potential and two minimization principles involving magnetic vector potential. We then apply our formulations to the dimension reduction problem for thin ferromagnetic shells of arbitrary shapes.</p
journal-articleMicromagnetic con gurations of the vortex and onion type have beenwidely studied in t...
Ferromagnetic materials are governed by a variational principle which is nonlocal, nonconvex and mul...
A new model for the energy of a mixture of micromagnetic materials is introduced within the context ...
We revisit the basic variational formulation of the minimization problem associated with the microma...
Micromagnetics is a nonlocal, nonconvex variational problem. Its minimizer represents the ground-sta...
AbstractWe present a new characterization of minimizing sequences and possible minimizers (all calle...
Abstract: We address the branching of magnetic domains in a uniaxial ferromagnet. Our thesis is that...
The primary aim of this paper is the derivation and the proof of a simple and tractable formula for ...
Abstract. The magnetization of a ferromagnetic sample solves a non-convex variational problem, where...
Let be a smooth bounded domain and consider the energy functional Here is a small parameter and the ...
The magnetization of a ferromagnetic sample solves a non-convex variational problem, where its relax...
We study a particular regime for thin rectangular micromagnetic films. Following an idea of Ignat an...
Abstract The effective behaviour of stationary micromagnetic phenomena is modelled by a convexified ...
We prove the existence of energy-minimizing configurations for a two-dimensional, variational model ...
We determine by a scaling calculation the limiting form of the free energy govern-ing a ferromagneti...
journal-articleMicromagnetic con gurations of the vortex and onion type have beenwidely studied in t...
Ferromagnetic materials are governed by a variational principle which is nonlocal, nonconvex and mul...
A new model for the energy of a mixture of micromagnetic materials is introduced within the context ...
We revisit the basic variational formulation of the minimization problem associated with the microma...
Micromagnetics is a nonlocal, nonconvex variational problem. Its minimizer represents the ground-sta...
AbstractWe present a new characterization of minimizing sequences and possible minimizers (all calle...
Abstract: We address the branching of magnetic domains in a uniaxial ferromagnet. Our thesis is that...
The primary aim of this paper is the derivation and the proof of a simple and tractable formula for ...
Abstract. The magnetization of a ferromagnetic sample solves a non-convex variational problem, where...
Let be a smooth bounded domain and consider the energy functional Here is a small parameter and the ...
The magnetization of a ferromagnetic sample solves a non-convex variational problem, where its relax...
We study a particular regime for thin rectangular micromagnetic films. Following an idea of Ignat an...
Abstract The effective behaviour of stationary micromagnetic phenomena is modelled by a convexified ...
We prove the existence of energy-minimizing configurations for a two-dimensional, variational model ...
We determine by a scaling calculation the limiting form of the free energy govern-ing a ferromagneti...
journal-articleMicromagnetic con gurations of the vortex and onion type have beenwidely studied in t...
Ferromagnetic materials are governed by a variational principle which is nonlocal, nonconvex and mul...
A new model for the energy of a mixture of micromagnetic materials is introduced within the context ...