We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in the interiors of relativistic stars. As a concrete example, we consider the generation of a non-zero photon mass in such high-density environments. This is achieved by means of a light gravitational scalar, and the scalarization phase transition in scalar-tensor theories of gravitation. Two distinct models are presented, and phenomenological implications are briefly discussed
We address neutron stars and black holes in alternative gravities, after recalling their basic prope...
Although general relativity passes all precision tests to date, there are several reasons to go beyo...
This thesis is about the possible consequences of the existence of scalar particles on astrophysical...
We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in ...
We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in ...
We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in ...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
We compute families of spherically symmetric neutron-star models in two-derivative scalar-tensor the...
We demonstrate that there are theories that exhibit spontaneous scalarization in the strong gravity ...
We compute families of spherically symmetric neutron-star models in two-derivative scalar-tensor the...
In the presence of appropriate non-minimal couplings between a scalar field and the curvature squar...
Although general relativity passes all precision tests to date, there are several reasons to go beyo...
We address neutron stars and black holes in alternative gravities, after recalling their basic prope...
Although general relativity passes all precision tests to date, there are several reasons to go beyo...
This thesis is about the possible consequences of the existence of scalar particles on astrophysical...
We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in ...
We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in ...
We suggest that nonminimally coupled scalar fields can lead to modifications of the microphysics in ...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
In scalar-tensor theories, spontaneous scalarization is a phase transition that can occur in ultrade...
We compute families of spherically symmetric neutron-star models in two-derivative scalar-tensor the...
We demonstrate that there are theories that exhibit spontaneous scalarization in the strong gravity ...
We compute families of spherically symmetric neutron-star models in two-derivative scalar-tensor the...
In the presence of appropriate non-minimal couplings between a scalar field and the curvature squar...
Although general relativity passes all precision tests to date, there are several reasons to go beyo...
We address neutron stars and black holes in alternative gravities, after recalling their basic prope...
Although general relativity passes all precision tests to date, there are several reasons to go beyo...
This thesis is about the possible consequences of the existence of scalar particles on astrophysical...