Scalar fields, strongly coupled to matter, can be present in nature and still be invisible to local experiments if they are subject to a screening mechanism. The symmetron is one such mechanism that relies on restoration of a spontaneously broken symmetry in regions of high density to shield the scalar fifth force. We have investigated structure formation in the symmetron model by using N-body simulations and find observable signatures in both the linear and nonlinear matter power spectrum and on the halo mass function. The mechanism for suppressing the scalar fifth force in high-density regions is also found to work very well
We consider modified gravity models driven by a scalar field whose effects are screened in high dens...
We show that the radial acceleration relation for rotationally supported galaxies may be explained, ...
We show that the radial acceleration relation for rotationally supported galaxies may be explained, ...
Scalar fields, strongly coupled to matter, can be present in nature and still be invisible to local ...
In the symmetron mechanism, the fifth force mediated by a coupled scalar field (the symmetron) is su...
We investigate the environment dependence of dark matter halos in the symmetron modified gravity sce...
In this paper we present the results of N-body simulations with a scalar field coupled differently t...
A coupling between a scalar field (representing the dark energy) and dark matter could produce rich ...
We lay out the framework to numerically study nonlinear structure formation in the context of scalar...
We study the properties of voids in two different types of coupled scalar field theories. Due to the...
We describe in detail the general methodology and numerical implementation of consistent N-body simu...
We apply the new constraints from atom-interferometry searches for screening mechanisms to the symme...
We apply the new constraints from atom-interferometry searches for screening mechanisms to the symme...
Extending general relativity by adding extra degrees of freedom is a popular approach for explaining...
It has been shown that the presence of nonminimally coupled scalar fields giving rise to a fifth for...
We consider modified gravity models driven by a scalar field whose effects are screened in high dens...
We show that the radial acceleration relation for rotationally supported galaxies may be explained, ...
We show that the radial acceleration relation for rotationally supported galaxies may be explained, ...
Scalar fields, strongly coupled to matter, can be present in nature and still be invisible to local ...
In the symmetron mechanism, the fifth force mediated by a coupled scalar field (the symmetron) is su...
We investigate the environment dependence of dark matter halos in the symmetron modified gravity sce...
In this paper we present the results of N-body simulations with a scalar field coupled differently t...
A coupling between a scalar field (representing the dark energy) and dark matter could produce rich ...
We lay out the framework to numerically study nonlinear structure formation in the context of scalar...
We study the properties of voids in two different types of coupled scalar field theories. Due to the...
We describe in detail the general methodology and numerical implementation of consistent N-body simu...
We apply the new constraints from atom-interferometry searches for screening mechanisms to the symme...
We apply the new constraints from atom-interferometry searches for screening mechanisms to the symme...
Extending general relativity by adding extra degrees of freedom is a popular approach for explaining...
It has been shown that the presence of nonminimally coupled scalar fields giving rise to a fifth for...
We consider modified gravity models driven by a scalar field whose effects are screened in high dens...
We show that the radial acceleration relation for rotationally supported galaxies may be explained, ...
We show that the radial acceleration relation for rotationally supported galaxies may be explained, ...