AbstractIn this paper we discuss classical aspects of spinor field theory on the coordinate dependent noncommutative space–time. The noncommutative Dirac equation describing spinning particle in an external vector field and the corresponding action principle are proposed. The specific choice of a star product allows us to derive a conserved noncommutative probability current and to obtain the energy–momentum tensor for free noncommutative spinor field. Finally, we consider a free noncommutative Dirac fermion and show that if the Poisson structure is Lorentz-covariant, the standard energy–momentum dispersion relation remains valid
The role of Lorentz symmetry in noncommutative field theory is considered. Any realistic noncommutat...
We consider the probabilistic description of nonrelativistic, spinless one-particle classical mechan...
The fundamental concepts of Riemannian geometry, such as differential forms, vielbein, metric, conne...
AbstractIn this paper we discuss classical aspects of spinor field theory on the coordinate dependen...
AbstractIn this work, we gain further insight in the physical aspects of the spin noncommutativity, ...
The Dirac approach to constrained systems can be adapted to construct relativistic invariant theorie...
AbstractWe propose a relativistic Lorentz-invariant spin-noncommutative algebra. Using the Weyl orde...
In this article we considered models of particles living in a three-dimensional space-time with a no...
In the last decades, noncommutative spacetimes and their deformed relativistic symmetries have usual...
In this article we considered models of particles living in a three-dimensional space-time with a no...
We continue discussion of nancommutative relativistic particle proposed in hep-th/0207274. Consisten...
An overview of recent developments in the renormalization and in the implementation of spacetime sym...
AbstractIn this work, we gain further insight in the physical aspects of the spin noncommutativity, ...
AbstractA noncommutative version of D-dimensional relativistic particle is proposed. We consider the...
The role of Lorentz symmetry in noncommutative field theory is considered. Any realistic noncommutat...
The role of Lorentz symmetry in noncommutative field theory is considered. Any realistic noncommutat...
We consider the probabilistic description of nonrelativistic, spinless one-particle classical mechan...
The fundamental concepts of Riemannian geometry, such as differential forms, vielbein, metric, conne...
AbstractIn this paper we discuss classical aspects of spinor field theory on the coordinate dependen...
AbstractIn this work, we gain further insight in the physical aspects of the spin noncommutativity, ...
The Dirac approach to constrained systems can be adapted to construct relativistic invariant theorie...
AbstractWe propose a relativistic Lorentz-invariant spin-noncommutative algebra. Using the Weyl orde...
In this article we considered models of particles living in a three-dimensional space-time with a no...
In the last decades, noncommutative spacetimes and their deformed relativistic symmetries have usual...
In this article we considered models of particles living in a three-dimensional space-time with a no...
We continue discussion of nancommutative relativistic particle proposed in hep-th/0207274. Consisten...
An overview of recent developments in the renormalization and in the implementation of spacetime sym...
AbstractIn this work, we gain further insight in the physical aspects of the spin noncommutativity, ...
AbstractA noncommutative version of D-dimensional relativistic particle is proposed. We consider the...
The role of Lorentz symmetry in noncommutative field theory is considered. Any realistic noncommutat...
The role of Lorentz symmetry in noncommutative field theory is considered. Any realistic noncommutat...
We consider the probabilistic description of nonrelativistic, spinless one-particle classical mechan...
The fundamental concepts of Riemannian geometry, such as differential forms, vielbein, metric, conne...