doctoralThesis
Evolução top-hat hidrodinâmica em campos de velocidades peculiares primordiais
Fecha
2012-02-16Registro en:
SOUZA, Hidalyn Theodory Clemente Mattos de. Hydrodynamics Top-Hat Evolution in Primordial Peculiar Velocities
Fields. 2012. 160 f. Tese (Doutorado em Física da Matéria Condensada; Astrofísica e Cosmologia; Física da Ionosfera) - Universidade Federal do Rio Grande do Norte, Natal, 2012.
Autor
Souza, Hidalyn Theodory Clemente Mattos de
Resumen
We investigate the cosmology of the vacuum energy decaying into cold dark matter according
to thermodynamics description of Alcaniz & Lima. We apply this model to analyze
the evolution of primordial density perturbations in the matter that gave rise to the first
generation of structures bounded by gravity in the Universe, called Population III Objects.
The analysis of the dynamics of those systems will involve the calculation of a differential
equation system governing the evolution of perturbations to the case of two coupled
fluids (dark matter and baryonic matter), modeled with a Top-Hat profile based in the
perturbation of the hydrodynamics equations, an efficient analytical tool to study the properties
of dark energy models such as the behavior of the linear growth factor and the
linear growth index, physical quantities closely related to the fields of peculiar velocities
at any time, for different models of dark energy. The properties and the dynamics of current
Universe are analyzed through the exact analytical form of the linear growth factor of
density fluctuations, taking into account the influence of several physical cooling mechanisms
acting on the density fluctuations of the baryonic component of matter during the
evolution of the clouds of matter, studied from the primordial hydrogen recombination.
This study is naturally extended to more general models of dark energy with constant
equation of state parameter in a flat Universe