We consider massive spin 1 fields, in Riemann-Cartan space-times, described by Duffin-Kemmer-Petiau theory. We show that this approach induces a coupling between the spin 1 field and the space-time torsion which breaks the usual equivalence with the Proca theory, but that such equivalence is preserved in the context of the Teleparallel Equivalent of General Relativity
In this work, we focus on the dynamics of Dirac particles in the presence of a constant electric fie...
The Newman–Penrose formalism, which has been extremely useful in general relativity, is extended to ...
Summary: We review the relation between space-time geometries with tor-sion fields (the so-called Ri...
We study DKP equation for massive, spin 0 and spin 1, fields in Riemann-Cartan space-times. In this ...
The general scheme for massive spin 1 equation in curved space-time is specialized to describe the P...
We study the relation between the spin-1 sector of the Duffin-Kemmer-Petiau (DKP) Equation and Proca...
Here we study the behaviour of spin 0 sector of DKP field in spaces with torsion. First we show that...
In the last years, several papers addressed the supposed spin-1 sector of the massive Duffin-Kemmer...
We investigate the conformal invariance of massless Duffin-Kemmer-Petiau theory coupled to Riemannia...
A two spinor lagrangian formulation of field equations for massive particle of arbitrary spin is pro...
It is known that while spin-1 (Proca) theory with minimal electromagnetic interaction is marred by t...
The generic form of space-time dynamics as a classical gauge field theory has recently been derived,...
The coupling problem of higher spin fields with a non dynamical background is revisited, focussing o...
Einstein-Cartan theory is an extension of the standard formulation of General Relativity where torsi...
We show that the torsion of a Cartan geometry can be associated to two spin-2 fields. This structure...
In this work, we focus on the dynamics of Dirac particles in the presence of a constant electric fie...
The Newman–Penrose formalism, which has been extremely useful in general relativity, is extended to ...
Summary: We review the relation between space-time geometries with tor-sion fields (the so-called Ri...
We study DKP equation for massive, spin 0 and spin 1, fields in Riemann-Cartan space-times. In this ...
The general scheme for massive spin 1 equation in curved space-time is specialized to describe the P...
We study the relation between the spin-1 sector of the Duffin-Kemmer-Petiau (DKP) Equation and Proca...
Here we study the behaviour of spin 0 sector of DKP field in spaces with torsion. First we show that...
In the last years, several papers addressed the supposed spin-1 sector of the massive Duffin-Kemmer...
We investigate the conformal invariance of massless Duffin-Kemmer-Petiau theory coupled to Riemannia...
A two spinor lagrangian formulation of field equations for massive particle of arbitrary spin is pro...
It is known that while spin-1 (Proca) theory with minimal electromagnetic interaction is marred by t...
The generic form of space-time dynamics as a classical gauge field theory has recently been derived,...
The coupling problem of higher spin fields with a non dynamical background is revisited, focussing o...
Einstein-Cartan theory is an extension of the standard formulation of General Relativity where torsi...
We show that the torsion of a Cartan geometry can be associated to two spin-2 fields. This structure...
In this work, we focus on the dynamics of Dirac particles in the presence of a constant electric fie...
The Newman–Penrose formalism, which has been extremely useful in general relativity, is extended to ...
Summary: We review the relation between space-time geometries with tor-sion fields (the so-called Ri...