AbstractWe examine flat models containing a dark matter component and an arbitrary dark energy component, subject only to the constraint that the dark energy satisfies the weak energy condition. We determine the constraints that these conditions place on the evolution of the Hubble parameter with redshift, H(z), and on the scaling of the coordinate distance with redshift, r(z). Observational constraints on H(z) are used to derive an upper bound on the current matter density. We demonstrate how the weak energy condition constrains fitting functions for r(z)
International audienceWe examine constraints obtained from SNIa surveys on a two parameter model of ...
We investigate a class of dark energy models in which the equation of state undergoes a rapid transi...
Decaying Dark Energy models modify the background evolution of the most common observables, such as ...
AbstractWe examine flat models containing a dark matter component and an arbitrary dark energy compo...
We examine flat models containing a dark matter component and an arbitrary dark energy component, su...
The nature of dark energy affects the Hubble expansion rate (namely, the expansion history) H(z) by ...
AbstractWe examine the effectiveness of the weak gravity conjecture in constraining the dark energy ...
Knowing the late time evolution of the Universe and finding out the causes for this evolution are t...
We study the holographic and agegraphic dark energy models without interaction using the latest obse...
We model the expansion history of the Universe as a Gaussian process and find constraints on the dar...
The expansion rate of the Universe changes with time, initially slowing (decelerating) when the univ...
International audienceWe examine constraints obtained from SNIa surveys on a two parameter model of ...
We investigate a class of dark energy models in which the equation of state undergoes a rapid transi...
Decaying Dark Energy models modify the background evolution of the most common observables, such as ...
AbstractWe examine flat models containing a dark matter component and an arbitrary dark energy compo...
We examine flat models containing a dark matter component and an arbitrary dark energy component, su...
The nature of dark energy affects the Hubble expansion rate (namely, the expansion history) H(z) by ...
AbstractWe examine the effectiveness of the weak gravity conjecture in constraining the dark energy ...
Knowing the late time evolution of the Universe and finding out the causes for this evolution are t...
We study the holographic and agegraphic dark energy models without interaction using the latest obse...
We model the expansion history of the Universe as a Gaussian process and find constraints on the dar...
The expansion rate of the Universe changes with time, initially slowing (decelerating) when the univ...
International audienceWe examine constraints obtained from SNIa surveys on a two parameter model of ...
We investigate a class of dark energy models in which the equation of state undergoes a rapid transi...
Decaying Dark Energy models modify the background evolution of the most common observables, such as ...