Using big bang nucleosynthesis and present, high-precision measurements of light element abundances, we constrain the self-gravity of radiation pressure in the early universe. The self-gravity of pressure is strictly non-Newtonian, and thus the constraints we set provide a direct test of this prediction of general relativity and of the standard, Friedmann-Robertson-Walker cosmology
This paper derives an upper limit on the density ρΛ of dark energy based on the requirement that cos...
By studying a modified Friedmann equation which arises in an extension of general relativity which a...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...
Using big bang nucleosynthesis and present, high-precision measurements of light element abundances,...
The current cosmological models are built based on general relativity. The solutions of the specific...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...
We derive a general master equation relating the gravitational-wave observables r and Omega_gw(f). H...
Big Bang Nucleosynthesis can provide, via constraints on the expansion rate at that time, limits on ...
We present cosmological constraints on deviations of Newton's constant at large scales, analyzing la...
The Scale Invariant Vacuum (SIV) paradigm is applied to the Big-Bang Nucleosynthesis using the known...
Big Bang Nucleosynthesis (BBN) is very sensitive to the cosmological expansion rate. If the gravitat...
We present a detailed calculation of the light element production in the framework of Scalar-Tensor ...
The baryon overdensity and the matching of the big bang explosion energy with gravitation can be sol...
AbstractWe examine constraints from Big Bang nucleosynthesis on type II Randall–Sundrum brane cosmol...
In a class of models designed to solve the cosmological constant problem by coupling scalar or tenso...
This paper derives an upper limit on the density ρΛ of dark energy based on the requirement that cos...
By studying a modified Friedmann equation which arises in an extension of general relativity which a...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...
Using big bang nucleosynthesis and present, high-precision measurements of light element abundances,...
The current cosmological models are built based on general relativity. The solutions of the specific...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...
We derive a general master equation relating the gravitational-wave observables r and Omega_gw(f). H...
Big Bang Nucleosynthesis can provide, via constraints on the expansion rate at that time, limits on ...
We present cosmological constraints on deviations of Newton's constant at large scales, analyzing la...
The Scale Invariant Vacuum (SIV) paradigm is applied to the Big-Bang Nucleosynthesis using the known...
Big Bang Nucleosynthesis (BBN) is very sensitive to the cosmological expansion rate. If the gravitat...
We present a detailed calculation of the light element production in the framework of Scalar-Tensor ...
The baryon overdensity and the matching of the big bang explosion energy with gravitation can be sol...
AbstractWe examine constraints from Big Bang nucleosynthesis on type II Randall–Sundrum brane cosmol...
In a class of models designed to solve the cosmological constant problem by coupling scalar or tenso...
This paper derives an upper limit on the density ρΛ of dark energy based on the requirement that cos...
By studying a modified Friedmann equation which arises in an extension of general relativity which a...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...