In this paper we have considered the dynamics of an anomalous (g≠2) charged relativistic spinning particle in the presence of an external electromagnetic field. A constraint analysis is done and the complete set of Dirac brackets are provided that generate the canonical Lorentz algebra and dynamics through Hamiltonian equations of motion. The spin-induced effective curvature of spacetime and its possible connection with Analogue Gravity models are commented upon
AbstractThe Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativ...
The Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativistic pa...
An examination is made of the consequences for the quantum mechanics of spinning particles of equati...
The Hamiltonian formulation of the motion of a spinning relativistic particle in an external electro...
We review the recent results on development of vector models of spin and apply them to study the inf...
Massless spinning particle model that interacts with electromagnetic and antisymmetric gauge fields ...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
We study the quantum and classical dynamics of spinning particles in the framework of the general-re...
A relativistic spin operator cannot be uniquely defined within relativistic quantum mechanics. Previ...
We derive an involutive system of equations describing the classical relativistic motion of a charge...
We use the vector model of spinning particle to analyze the influence of spin-field coupling on the ...
The motion of a massive particle with intrinsic spin in a gravitational Einstein vacuum plane wave b...
A critical study of the behaviour of a massive spin two charged particle in an external electromagne...
In this work, we focus on the dynamics of Dirac particles in the presence of a constant electric fie...
The equations of motion for the position and spin of a classical particle coupled to an external ele...
AbstractThe Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativ...
The Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativistic pa...
An examination is made of the consequences for the quantum mechanics of spinning particles of equati...
The Hamiltonian formulation of the motion of a spinning relativistic particle in an external electro...
We review the recent results on development of vector models of spin and apply them to study the inf...
Massless spinning particle model that interacts with electromagnetic and antisymmetric gauge fields ...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
We study the quantum and classical dynamics of spinning particles in the framework of the general-re...
A relativistic spin operator cannot be uniquely defined within relativistic quantum mechanics. Previ...
We derive an involutive system of equations describing the classical relativistic motion of a charge...
We use the vector model of spinning particle to analyze the influence of spin-field coupling on the ...
The motion of a massive particle with intrinsic spin in a gravitational Einstein vacuum plane wave b...
A critical study of the behaviour of a massive spin two charged particle in an external electromagne...
In this work, we focus on the dynamics of Dirac particles in the presence of a constant electric fie...
The equations of motion for the position and spin of a classical particle coupled to an external ele...
AbstractThe Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativ...
The Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativistic pa...
An examination is made of the consequences for the quantum mechanics of spinning particles of equati...