AbstractWe study the infrared effective theory of gravity that stems from the quantum trace anomaly. Quantum fluctuations of the metric induce running of the cosmological constant and the Newton constant at cosmological scales. By imposing the generalized Bianchi identity we obtain a prediction for the scale dependence of the dark matter and dark energy densities in terms of the parameters of the underlying conformal theory. For certain values of the model parameters the dark energy equation of state and the observed spectral index of the primordial density fluctuations can be simultaneously reproduced
In a bid to resolve lingering problems in modern Cosmology, Cosmologist are turning to models in whi...
We show that the presence of a temporal electromagnetic field on cosmological scales generates an ef...
AbstractWe present a holographic dark-energy model in which the Newton constant GN scales in such a ...
AbstractWe study the infrared effective theory of gravity that stems from the quantum trace anomaly....
The trace anomaly of conformal matter implies the existence of massless scalar poles in physical amp...
We show how, by considering the cumulative effect of tiny quantum gravitational fluctuations over ve...
We suggest that the solution to the cosmological vacuum energy puzzle may come from the infrared sec...
We suggest that the solution to the cosmological vacuum energy puzzle may come from the infrared sec...
General Relativity receives quantum corrections relevant at macroscopic distance scales and near eve...
We present a new interpretation of dark energy in terms of an \textit{Abnormally Weighting Energy} (...
The cosmological constant is the most economical candidate for dark energy. No other approach really...
AbstractWe suggest that the solution to the cosmological vacuum energy puzzle is linked to the infra...
The nonperturbative renormalization group flow of Quantum Einstein Gravity (QEG) is reviewed. It is ...
The cosmological constant is the most economical candidate for dark energy. No other approach really...
We consider dark energy cosmology in a de Sitter universe filled with quantum conformal matter. Our ...
In a bid to resolve lingering problems in modern Cosmology, Cosmologist are turning to models in whi...
We show that the presence of a temporal electromagnetic field on cosmological scales generates an ef...
AbstractWe present a holographic dark-energy model in which the Newton constant GN scales in such a ...
AbstractWe study the infrared effective theory of gravity that stems from the quantum trace anomaly....
The trace anomaly of conformal matter implies the existence of massless scalar poles in physical amp...
We show how, by considering the cumulative effect of tiny quantum gravitational fluctuations over ve...
We suggest that the solution to the cosmological vacuum energy puzzle may come from the infrared sec...
We suggest that the solution to the cosmological vacuum energy puzzle may come from the infrared sec...
General Relativity receives quantum corrections relevant at macroscopic distance scales and near eve...
We present a new interpretation of dark energy in terms of an \textit{Abnormally Weighting Energy} (...
The cosmological constant is the most economical candidate for dark energy. No other approach really...
AbstractWe suggest that the solution to the cosmological vacuum energy puzzle is linked to the infra...
The nonperturbative renormalization group flow of Quantum Einstein Gravity (QEG) is reviewed. It is ...
The cosmological constant is the most economical candidate for dark energy. No other approach really...
We consider dark energy cosmology in a de Sitter universe filled with quantum conformal matter. Our ...
In a bid to resolve lingering problems in modern Cosmology, Cosmologist are turning to models in whi...
We show that the presence of a temporal electromagnetic field on cosmological scales generates an ef...
AbstractWe present a holographic dark-energy model in which the Newton constant GN scales in such a ...