The Cardassian universe is a proposed modification to the Friedmann equation in which the universe is flat, matter dominated, and accelerating. In the ordinary Friedmann equation, the right hand side is a linear function of the energy density, $H^2 \sim \rho$. Here, instead, the right hand side of the Friedmann equation is a different function of the energy density, $H^2 \sim g(\rho)$. This function returns to ordinary Friedmann at early times, but drives acceleration of the universe at the current epoch. The only ingredients in this universe are matter and radiation: in particular, there is NO vacuum contribution. The new term required may arise, e.g., as a consequence of our observable universe living as a 3-dimensional brane in a higher ...
We consider perturbative modifications of the Friedmann equations in terms of density corresponding ...
We apply the gravity-thermodynamics conjecture, namely the first law of thermodynamics on the Univer...
We present a physico-chemical approach to determine the composition of the universe and elucidate ...
The Cardassian universe is a proposed modification to the Friedmann Robertson Walker equation in whi...
New work gathers in Chapter 6 and Chapter 7. Tthe Cardassian dynamical equations are introduced gene...
The general relativistic cosmological Friedmann equations, which describe how the scale factor of th...
As an explanation for the acceleration of the universe, we propose dark matter with self-interaction...
The recent observations of type Ia supernovae suggest that the universe is accelerating now and dece...
AbstractSeveral Cardassian universe models including the original, modified polytropic and exponenti...
ABSTRACT We present a thermodynamic approach in modeling the evolution of the universe ba...
In 1922, Alexander Friedmann applied Einstein’s equations to a three-dimensional sphere to describe ...
In this report we will investigate the effect of negative energy density in a classic Friedmann cosm...
We present a thermodynamic approach in modeling the evolution of the universe based on a theory t...
We present a physico-chemical approach in modeling the evolution of the universe to obtain informa...
One hundred years ago, Russian mathematician and physicist Alexander A. Friedmann applied the system...
We consider perturbative modifications of the Friedmann equations in terms of density corresponding ...
We apply the gravity-thermodynamics conjecture, namely the first law of thermodynamics on the Univer...
We present a physico-chemical approach to determine the composition of the universe and elucidate ...
The Cardassian universe is a proposed modification to the Friedmann Robertson Walker equation in whi...
New work gathers in Chapter 6 and Chapter 7. Tthe Cardassian dynamical equations are introduced gene...
The general relativistic cosmological Friedmann equations, which describe how the scale factor of th...
As an explanation for the acceleration of the universe, we propose dark matter with self-interaction...
The recent observations of type Ia supernovae suggest that the universe is accelerating now and dece...
AbstractSeveral Cardassian universe models including the original, modified polytropic and exponenti...
ABSTRACT We present a thermodynamic approach in modeling the evolution of the universe ba...
In 1922, Alexander Friedmann applied Einstein’s equations to a three-dimensional sphere to describe ...
In this report we will investigate the effect of negative energy density in a classic Friedmann cosm...
We present a thermodynamic approach in modeling the evolution of the universe based on a theory t...
We present a physico-chemical approach in modeling the evolution of the universe to obtain informa...
One hundred years ago, Russian mathematician and physicist Alexander A. Friedmann applied the system...
We consider perturbative modifications of the Friedmann equations in terms of density corresponding ...
We apply the gravity-thermodynamics conjecture, namely the first law of thermodynamics on the Univer...
We present a physico-chemical approach to determine the composition of the universe and elucidate ...