Dark energy perturbations and cosmic coincidence
Javier Grande, Ana Pelinson, Joan Sola

TL;DR
This paper investigates dark energy perturbations and their role in addressing the cosmic coincidence problem by analyzing a dynamical DE model and identifying parameter regions consistent with cosmological observations.
Contribution
It introduces a framework for analyzing matter and dark energy perturbations and applies it to a specific dynamical DE model to find conditions that solve the coincidence problem.
Findings
Identifies parameter space where the model aligns with structure formation data.
Shows that the coupled perturbation system remains smooth throughout evolution.
Demonstrates the model can solve the coincidence problem while fitting cosmological data.
Abstract
While there is plentiful evidence in all fronts of experimental cosmology for the existence of a non-vanishing dark energy (DE) density \rho_D in the Universe, we are still far away from having a fundamental understanding of its ultimate nature and of its current value, not even of the puzzling fact that \rho_D is so close to the matter energy density \rho_M at the present time (i.e. the so-called "cosmic coincidence" problem). The resolution of some of these cosmic conundrums suggests that the DE must have some (mild) dynamical behavior at the present time. In this paper, we examine some general properties of the simultaneous set of matter and DE perturbations (\delta\rho_M, \delta\rho_D) for a multicomponent DE fluid. Next we put these properties to the test within the context of a non-trivial model of dynamical DE (the LXCDM model) which has been previously studied in the literature.…
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Taxonomy
TopicsCosmology and Gravitation Theories · Galaxies: Formation, Evolution, Phenomena · Statistical Mechanics and Entropy
