We present a conjugate analysis of two different dark energy models, namely the Barboza–Alcaniz parameterization and the phenomenologically-motivated Hobbit model, investigating both their agreement with observational data and their thermodynamical properties. We successfully fit a wide dataset including the Hubble diagram of Type Ia Supernovae, the Hubble rate expansion parameter as measured from cosmic chronometers, the baryon acoustic oscillations (BAO) standard ruler data and the Planck distance priors. This analysis allows us to constrain the model parameters, thus pointing at the region of the wide parameters space, which is worth focusing on. As a novel step, we exploit the strong connection between gravity and thermodynamics to furt...
In this paper, we propose a new phenomenological two parameter parameterization of q(z) to constrain...
Abstract Using the first law of thermodynamics, we propose a relation between the system entropy (S)...
We apply the gravity-thermodynamics conjecture, namely the first law of thermodynamics on the Univer...
We study the holographic and agegraphic dark energy models without interaction using the latest obse...
So far large and different data sets revealed the accelerated expansion rate of the Universe, which ...
Dark energy’s thermodynamics is here revised giving particular attention to the role played by speci...
Physical limits on the equation-of-state (EoS) parameter of a dark energy component non-minimally co...
Considering the cosmic fluid as a quasi-static thermodynamic system, the status of the generalized s...
The H0 tension and the accompanying rd tension are a hot topic in current cosmology. In order to rem...
ABSTRACT We present a thermodynamic approach in modeling the evolution of the universe ba...
We apply the thermodynamical model of the cosmological event horizon of the spatially flat FLRW metr...
We consider the interacting Tsallis Holographic Dark Energy (THDE), with the Granda–Oliveros (GO) sc...
Astronomical observations performed in the last 20 years involving type Ia Supernovae, cosmic micro...
Particle creation (or annihilation) mechanisms, described by either quantum field theoretical models...
International audienceWe apply the thermodynamical model of the cosmological event horizon of the sp...
In this paper, we propose a new phenomenological two parameter parameterization of q(z) to constrain...
Abstract Using the first law of thermodynamics, we propose a relation between the system entropy (S)...
We apply the gravity-thermodynamics conjecture, namely the first law of thermodynamics on the Univer...
We study the holographic and agegraphic dark energy models without interaction using the latest obse...
So far large and different data sets revealed the accelerated expansion rate of the Universe, which ...
Dark energy’s thermodynamics is here revised giving particular attention to the role played by speci...
Physical limits on the equation-of-state (EoS) parameter of a dark energy component non-minimally co...
Considering the cosmic fluid as a quasi-static thermodynamic system, the status of the generalized s...
The H0 tension and the accompanying rd tension are a hot topic in current cosmology. In order to rem...
ABSTRACT We present a thermodynamic approach in modeling the evolution of the universe ba...
We apply the thermodynamical model of the cosmological event horizon of the spatially flat FLRW metr...
We consider the interacting Tsallis Holographic Dark Energy (THDE), with the Granda–Oliveros (GO) sc...
Astronomical observations performed in the last 20 years involving type Ia Supernovae, cosmic micro...
Particle creation (or annihilation) mechanisms, described by either quantum field theoretical models...
International audienceWe apply the thermodynamical model of the cosmological event horizon of the sp...
In this paper, we propose a new phenomenological two parameter parameterization of q(z) to constrain...
Abstract Using the first law of thermodynamics, we propose a relation between the system entropy (S)...
We apply the gravity-thermodynamics conjecture, namely the first law of thermodynamics on the Univer...