In the framework of Einstein-Cartan (EC) theory, the Brans-Dicke (BD) theory is considered and it is found that a scalar field nonminimally coupled to the gravitational field gives rise to torsion, even though the scalar field has zero spin. The metric equations stay the same if the coupling constant is rescaled, but the equations of motion of a test particle, derived from the conservation equations, differ from those of the usual BD theory without torsion. The gravitational red-shift value differs considerably from the usual prediction of general theory of relativity (GTR), and rules out the possibility of a torsion version of BD theory \omega <6
The scalar tensor theory of gravitation is constructed in D dimensions in all possible geometries of...
We address the implementation of the cosmological principle, that is, the assumption of homogeneity ...
General Relativity with nonvanishing torsion has been investigated in the first order formalism of P...
In the framework of Einstein-Cartan (EC) theory, the Brans-Dicke (BD) theory is considered and it is...
The main aim of this thesis is to investigate non-Einsteinian interactions in a scalartensor theory ...
In the present paper we consider a theory of gravity in which not only curvature but also torsion is...
In Brans-Dicke gravity a scalar field non-minimally coupled with the curvature acts as a new gravita...
The general structure of a metric-torsion theory of gravitation allows a parity-violating contributi...
The general structure of a metric-torsion theory of gravitation allows a parity-violating contributi...
We argue that the geodesic hypothesis based on autoparallels of the Levi-Cività connection may need ...
Abstract We compare the gauging of the Bargmann algebra, for the case of arbitrary torsion, with the...
We study scalar, fermionic and gauge fields coupled nonminimally to gravity in the Einstein-Cartan f...
The role of torsion and a scalar field $\phi$ in gravitation, especially, in the presence of a Dirac...
Torsion is a property of space-time which is not incorporated into the standard formulation of gener...
Torsion is a property of space-time which is not incorporated into the standard formulation of gener...
The scalar tensor theory of gravitation is constructed in D dimensions in all possible geometries of...
We address the implementation of the cosmological principle, that is, the assumption of homogeneity ...
General Relativity with nonvanishing torsion has been investigated in the first order formalism of P...
In the framework of Einstein-Cartan (EC) theory, the Brans-Dicke (BD) theory is considered and it is...
The main aim of this thesis is to investigate non-Einsteinian interactions in a scalartensor theory ...
In the present paper we consider a theory of gravity in which not only curvature but also torsion is...
In Brans-Dicke gravity a scalar field non-minimally coupled with the curvature acts as a new gravita...
The general structure of a metric-torsion theory of gravitation allows a parity-violating contributi...
The general structure of a metric-torsion theory of gravitation allows a parity-violating contributi...
We argue that the geodesic hypothesis based on autoparallels of the Levi-Cività connection may need ...
Abstract We compare the gauging of the Bargmann algebra, for the case of arbitrary torsion, with the...
We study scalar, fermionic and gauge fields coupled nonminimally to gravity in the Einstein-Cartan f...
The role of torsion and a scalar field $\phi$ in gravitation, especially, in the presence of a Dirac...
Torsion is a property of space-time which is not incorporated into the standard formulation of gener...
Torsion is a property of space-time which is not incorporated into the standard formulation of gener...
The scalar tensor theory of gravitation is constructed in D dimensions in all possible geometries of...
We address the implementation of the cosmological principle, that is, the assumption of homogeneity ...
General Relativity with nonvanishing torsion has been investigated in the first order formalism of P...