AbstractIn this contribution we use linear invariants and the dynamical invariant method in the framework of the linear Schrödinger equation to study scalar fields in a Friedman–Robertson–Walker spacetime, obtaining exact wave functions to this problem. In addition, we construct Gaussian wave packet solutions and calculate the quantum fluctuations as well as the quantum correlations for each mode of the quantized scalar field
We review the theory of quantum fields propagating in an arbitrary, classical, globally hyperbolic s...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We describe scalar quantum electrodynamics by a gauge-invariant effective average action #GAMMA#_k. ...
AbstractIn this contribution we use linear invariants and the dynamical invariant method in the fram...
AbstractWe study the classical and quantum models of a scalar field Friedmann–Robertson–Walker (FRW)...
49 pags. -- This article belongs to the Special Issue Mathematical and Computational CosmologyIn thi...
AbstractIn this contribution, we investigate quantum effects of relic gravitons in a Friedmann–Rober...
We apply the Lewis–Riesenfeld invariant method for the harmonic oscillator with time dependent mass ...
AbstractWe study the classical and quantum models of a Friedmann–Robertson–Walker (FRW) cosmology, c...
We construct the quantum mechanical evolution operator in the Functional Schrodinger picture - the k...
In this work we investigate the quantum theory of scalar fields propagating in a D-dimensional de S...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We present a covariant quantum formalism for scalar particles based on an enlarged Hilbert space. Th...
The subject of this thesis is the coupling of quantum fields to a classical gravitational background...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We review the theory of quantum fields propagating in an arbitrary, classical, globally hyperbolic s...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We describe scalar quantum electrodynamics by a gauge-invariant effective average action #GAMMA#_k. ...
AbstractIn this contribution we use linear invariants and the dynamical invariant method in the fram...
AbstractWe study the classical and quantum models of a scalar field Friedmann–Robertson–Walker (FRW)...
49 pags. -- This article belongs to the Special Issue Mathematical and Computational CosmologyIn thi...
AbstractIn this contribution, we investigate quantum effects of relic gravitons in a Friedmann–Rober...
We apply the Lewis–Riesenfeld invariant method for the harmonic oscillator with time dependent mass ...
AbstractWe study the classical and quantum models of a Friedmann–Robertson–Walker (FRW) cosmology, c...
We construct the quantum mechanical evolution operator in the Functional Schrodinger picture - the k...
In this work we investigate the quantum theory of scalar fields propagating in a D-dimensional de S...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We present a covariant quantum formalism for scalar particles based on an enlarged Hilbert space. Th...
The subject of this thesis is the coupling of quantum fields to a classical gravitational background...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We review the theory of quantum fields propagating in an arbitrary, classical, globally hyperbolic s...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We describe scalar quantum electrodynamics by a gauge-invariant effective average action #GAMMA#_k. ...