The physics during the inflationary stage of the universe is of quantum nature involving extremely high energy densities. Moreover, it is out of equilibrium on a fastly expanding dynamical geometry.We present in these lectures non-perturbative out of equilibrium field theoretical methods in cosmological universes. We then study the non-linear dynamics of quantum fields in matter and radiation dominated FRW and de Sitter universes. We investigate the explosive particle production due to spinodal instabilities and parametric amplification in FRW and deSitter universes with and without symmetry breaking. We show how the particle production is sensitive to the expansion of the universe.We present a complete renormalization scheme for the equati...
We compute the primordial scalar, vector and tensor metric perturbations arising from quantum field ...
Les resultats présentés dans cette thèse sont publiés en anglais: * F. J. Cao, H. J. de Vega, Non-eq...
We present a renormalized computational framework for the evolution of a self-interacting scalar fie...
The energy and time scales during the inflationary stage of the universe calls for an out of equilib...
The physics of the inflationary universe requires the study of the out of equilibrium evolution of q...
For simple inflationary models, we provide a consistent and complete scheme by which the macro-physi...
We consider an O(N) model coupled self-consistently to gravity in the semi- classical approximation,...
We study the non-linear dynamics of an inflationary phase transition in a quartically self coupled i...
The nonequilibrium dynamics of quantum fields is studied in inflationary cosmology, with particular ...
An analysis of the decoherence of quantum fluctuations shows that production of classical adiabatic ...
We present a calculation of the power spectrum generated in a classically symmetry-breaking O(N) sca...
We study the evolution of quantum fluctuations of a scalar field which is coupled to the geometry, i...
In the framework of inflationary cosmology I study some aspects of nonequilibrium thermodynamics for...
Recently a mechanism was proposed whereby the primordial density perturbations are generated at the ...
Using the O(N) model as an example, we investigate the self-interaction effects of inflaton on the d...
We compute the primordial scalar, vector and tensor metric perturbations arising from quantum field ...
Les resultats présentés dans cette thèse sont publiés en anglais: * F. J. Cao, H. J. de Vega, Non-eq...
We present a renormalized computational framework for the evolution of a self-interacting scalar fie...
The energy and time scales during the inflationary stage of the universe calls for an out of equilib...
The physics of the inflationary universe requires the study of the out of equilibrium evolution of q...
For simple inflationary models, we provide a consistent and complete scheme by which the macro-physi...
We consider an O(N) model coupled self-consistently to gravity in the semi- classical approximation,...
We study the non-linear dynamics of an inflationary phase transition in a quartically self coupled i...
The nonequilibrium dynamics of quantum fields is studied in inflationary cosmology, with particular ...
An analysis of the decoherence of quantum fluctuations shows that production of classical adiabatic ...
We present a calculation of the power spectrum generated in a classically symmetry-breaking O(N) sca...
We study the evolution of quantum fluctuations of a scalar field which is coupled to the geometry, i...
In the framework of inflationary cosmology I study some aspects of nonequilibrium thermodynamics for...
Recently a mechanism was proposed whereby the primordial density perturbations are generated at the ...
Using the O(N) model as an example, we investigate the self-interaction effects of inflaton on the d...
We compute the primordial scalar, vector and tensor metric perturbations arising from quantum field ...
Les resultats présentés dans cette thèse sont publiés en anglais: * F. J. Cao, H. J. de Vega, Non-eq...
We present a renormalized computational framework for the evolution of a self-interacting scalar fie...