Creation of Viscous Dark Energy by the Hubble Flow: Comparison with SNe Ia Master Sample Binned Data
Iolanda Navone, Maria Giovanna Dainotti, Elisa Fazzari, Giovanni Montani, Naoto Maki, Kazunori Kohri

TL;DR
This paper proposes a cosmological model with viscous dark energy created from the gravitational field, compares its predictions with supernova data, and finds the dark energy exhibits phantom behavior across redshifts.
Contribution
It introduces a viscous dark energy model with additional parameters constrained by the mbda CDM deceleration parameter, and compares its effective Hubble constant with supernova data using MCMC.
Findings
Dark energy has a phantom equation of state parameter.
Removing particle creation yields quintessence-like dark energy.
Effective equation of state remains phantom across redshifts.
Abstract
We study a cosmological model featuring evolutionary dark energy, according to the idea that the creation of its constituents arises from the gravitational field of the expanding universe, whose non-equilibrium physics is described by a non-zero bulk viscosity coefficient. This physical scenario calls for two additional parameters with respect to the {\Lambda}CDM model, one of which is the equation of state parameter of the created dark energy. The model is constrained by the requirement that its deceleration parameter coincides with the one predicted by the {\Lambda}CDM model. Then, we construct the effective running Hubble constant, a theoretical function that corresponds to the ratio of the Hubble parameter in our model to the {\Lambda}CDM expansion rate. The model's theoretical predictions for the effective running Hubble constant are compared with the binned data of the Supernovae…
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Taxonomy
TopicsCosmology and Gravitation Theories · Gamma-ray bursts and supernovae · Galaxies: Formation, Evolution, Phenomena
