Extending general relativity by adding extra degrees of freedom is a popular approach for explaining the accelerated expansion of the Universe and to build high energy completions of the theory of gravity. The presence of such new degrees of freedom is, however, tightly constrained from several observations and experiments that aim to test general relativity in a wide range of scales. The viability of a given modified theory of gravity, therefore, strongly depends on the existence of a screening mechanism that suppresses the extra degrees of freedom. We perform simulations, and find that waves propagating in the new degrees of freedom can significantly impact the efficiency of some screening mechanisms, thereby threatening the viability of ...
The recent detection of gravitational waves (GWs) in 2015 opened a completely new way to constrain c...
In recent years, theories of gravity incorporating a scalar field coupled to gravity---'scalar-tenso...
We perform high-resolution N-body simulations for f(R) gravity based on a self-adaptive particle-mes...
Extending general relativity by adding extra degrees of freedom is a popular approach for explaining...
We consider the effect of a canonically normalised scalar field degree of freedom on the dynamics of ...
We consider modified gravity models driven by a scalar field whose effects are screened in high dens...
We reexamine the screening mechanism in f(R) gravity using N-body simulations. By explicitly examini...
In this paper we consider scalar-tensor theories, allowing for both conformal and disformal coupling...
We present numerical-relativity simulations of spherically symmetric core collapse and compact-objec...
We present numerical-relativity simulations of spherically symmetric core collapse and compact-objec...
We present numerical-relativity simulations of spherically symmetric core collapse and compact-objec...
Scalar fields, strongly coupled to matter, can be present in nature and still be invisible to local ...
We investigate the environment dependence of dark matter halos in the symmetron modified gravity sce...
The recent detection of gravitational waves (GWs) in 2015 opened a completely new way to constrain c...
The existence of scalar fields can be probed by observations of stochastic gravitational waves. Scal...
The recent detection of gravitational waves (GWs) in 2015 opened a completely new way to constrain c...
In recent years, theories of gravity incorporating a scalar field coupled to gravity---'scalar-tenso...
We perform high-resolution N-body simulations for f(R) gravity based on a self-adaptive particle-mes...
Extending general relativity by adding extra degrees of freedom is a popular approach for explaining...
We consider the effect of a canonically normalised scalar field degree of freedom on the dynamics of ...
We consider modified gravity models driven by a scalar field whose effects are screened in high dens...
We reexamine the screening mechanism in f(R) gravity using N-body simulations. By explicitly examini...
In this paper we consider scalar-tensor theories, allowing for both conformal and disformal coupling...
We present numerical-relativity simulations of spherically symmetric core collapse and compact-objec...
We present numerical-relativity simulations of spherically symmetric core collapse and compact-objec...
We present numerical-relativity simulations of spherically symmetric core collapse and compact-objec...
Scalar fields, strongly coupled to matter, can be present in nature and still be invisible to local ...
We investigate the environment dependence of dark matter halos in the symmetron modified gravity sce...
The recent detection of gravitational waves (GWs) in 2015 opened a completely new way to constrain c...
The existence of scalar fields can be probed by observations of stochastic gravitational waves. Scal...
The recent detection of gravitational waves (GWs) in 2015 opened a completely new way to constrain c...
In recent years, theories of gravity incorporating a scalar field coupled to gravity---'scalar-tenso...
We perform high-resolution N-body simulations for f(R) gravity based on a self-adaptive particle-mes...