Explicit formulas for the magnetic field and divergence of multisolenoid Aharonov-Bohm potential are obtained; the mathematical essence of this potential is explained. It is shown that the magnetic field and divergence of this potential are very singular generalized functions concentrated at a finite number of thin solenoids. Deficiency index is found for the minimal operator generated by the Aharonov-Bohm differential expression
We consider the Dirac equation in the magnetic-solenoid field (the field of a solenoid and a colline...
We explicitly compute the spectrum and eigenfunctions of the magnetic Schrödinger operator H(A→,V)=(...
The structure of additional electromagnetic fields to the Aharonov-Bohm field, for which the Schrodi...
The quantisation of a charged scalar field in an externally specified electromagnetic field, describ...
We consider the Dirac equation in the magnetic-solenoid field (the field of a solenoid and a colline...
We study the Aharonov-Bohm effect model by adding a scalar potential in the initial Hamiltonian. Usi...
We study how the eigenvalues of a magnetic Schrodinger operator of Aharonov-Bohm type depend on the ...
A quantum particle interacting with a thin solenoid and a magnetic flux is described by a five-param...
Abstract. The Aharonov-Bohm effect is traditionally attributed to the effect of the electromagnetic ...
We establish magnetic improvements upon the classical Hardy inequality for two specific choices of s...
International audienceThis paper is devoted to the symmetry and symmetry breaking properties of a tw...
A theoretical analysis of the excitation of an infinitely long solenoid by oscillating current has r...
The Aharonov–Bohm Hamiltonian is the energy operator which governs quantum particles moving in a sol...
This paper is devoted to a collection of results on nonlinear interpolation inequalities associated ...
Abstract. Consider the scattering amplitude s(ω, ω′;λ), ω, ω ′ ∈ Sd−1, λ> 0, corresponding to an...
We consider the Dirac equation in the magnetic-solenoid field (the field of a solenoid and a colline...
We explicitly compute the spectrum and eigenfunctions of the magnetic Schrödinger operator H(A→,V)=(...
The structure of additional electromagnetic fields to the Aharonov-Bohm field, for which the Schrodi...
The quantisation of a charged scalar field in an externally specified electromagnetic field, describ...
We consider the Dirac equation in the magnetic-solenoid field (the field of a solenoid and a colline...
We study the Aharonov-Bohm effect model by adding a scalar potential in the initial Hamiltonian. Usi...
We study how the eigenvalues of a magnetic Schrodinger operator of Aharonov-Bohm type depend on the ...
A quantum particle interacting with a thin solenoid and a magnetic flux is described by a five-param...
Abstract. The Aharonov-Bohm effect is traditionally attributed to the effect of the electromagnetic ...
We establish magnetic improvements upon the classical Hardy inequality for two specific choices of s...
International audienceThis paper is devoted to the symmetry and symmetry breaking properties of a tw...
A theoretical analysis of the excitation of an infinitely long solenoid by oscillating current has r...
The Aharonov–Bohm Hamiltonian is the energy operator which governs quantum particles moving in a sol...
This paper is devoted to a collection of results on nonlinear interpolation inequalities associated ...
Abstract. Consider the scattering amplitude s(ω, ω′;λ), ω, ω ′ ∈ Sd−1, λ> 0, corresponding to an...
We consider the Dirac equation in the magnetic-solenoid field (the field of a solenoid and a colline...
We explicitly compute the spectrum and eigenfunctions of the magnetic Schrödinger operator H(A→,V)=(...
The structure of additional electromagnetic fields to the Aharonov-Bohm field, for which the Schrodi...