We found Lagrangian action which describes spinning particle on the base of non-Grassmann vector and involves only one auxiliary variable. It provides the right number of physical degrees of freedom and yields generalization of the Frenkel and BMT equations to the case of an arbitrary electromagnetic field. For a particle with anomalous magnetic moment, singularity in the relativistic equations generally occurs at the speed different from the speed of light
AbstractThe Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativ...
The general classical equation of spin motion is rigorously derived for a particle with electric and...
We review the recent results on development of vector models of spin and apply them to study the inf...
AbstractWe found Lagrangian action which describes spinning particle on the base of non-Grassmann ve...
AbstractWe present Lagrangian which implies both necessary constraints and dynamical equations for p...
We present Lagrangian which implies both necessary constraints and dynamical equations for position ...
We use the vector model of spinning particle to analyze the influence of spin-field coupling on the ...
AbstractWe present Lagrangian which implies both necessary constraints and dynamical equations for p...
We construct a relativistic spinning-particle Lagrangian where spin is considered as a composite qua...
The motion of spinning relativistic particles in external electromagnetic and gravitational fields i...
In this letter, we review a manifestly covariant Lagrangian formulation for the dynamics of a classi...
We use the vector model of spinning particle to analyze the influence of spin-field coupling on the ...
Relativistic particles with higher spin can be described in first quantization using actions with lo...
Relativistic particles with higher spin can be described in first quantization using actions with lo...
We show how implementing invariance under divergence-free gauge transformations leads to a remarkabl...
AbstractThe Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativ...
The general classical equation of spin motion is rigorously derived for a particle with electric and...
We review the recent results on development of vector models of spin and apply them to study the inf...
AbstractWe found Lagrangian action which describes spinning particle on the base of non-Grassmann ve...
AbstractWe present Lagrangian which implies both necessary constraints and dynamical equations for p...
We present Lagrangian which implies both necessary constraints and dynamical equations for position ...
We use the vector model of spinning particle to analyze the influence of spin-field coupling on the ...
AbstractWe present Lagrangian which implies both necessary constraints and dynamical equations for p...
We construct a relativistic spinning-particle Lagrangian where spin is considered as a composite qua...
The motion of spinning relativistic particles in external electromagnetic and gravitational fields i...
In this letter, we review a manifestly covariant Lagrangian formulation for the dynamics of a classi...
We use the vector model of spinning particle to analyze the influence of spin-field coupling on the ...
Relativistic particles with higher spin can be described in first quantization using actions with lo...
Relativistic particles with higher spin can be described in first quantization using actions with lo...
We show how implementing invariance under divergence-free gauge transformations leads to a remarkabl...
AbstractThe Bargmann–Michel–Telegdi equations describing the motions of a spinning, charged, relativ...
The general classical equation of spin motion is rigorously derived for a particle with electric and...
We review the recent results on development of vector models of spin and apply them to study the inf...