Abstract We derive the stochastic description of a massless, interacting scalar field in de Sitter space directly from the quantum theory. This is done by showing that the density matrix for the effective theory of the long wavelength fluctuations of the field obeys a quantum version of the Fokker-Planck equation. This equation has a simple connection with the standard Fokker-Planck equation of the classical stochastic theory, which can be generalised to any order in perturbation theory. We illustrate this formalism in detail for the theory of a massless scalar field with a quartic interaction
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
The Quantum Stochastic Limit of a quantum mechanics particle coupled to a quantum field without the ...
We derive a stochastic wave equation for an inflaton in an environment of an infinite number of fiel...
We apply Starobinsky’s formalism of stochastic inflation to the case of a massless minimally coupled...
International audienceThe stochastic approach aims at describing the long-wavelength part of quantum...
Abstract: We identify the effective field theory describing the physics of super-Hubble scales and s...
Restricted Access.In quantum cosmology, a wave function ψ for a given theory can be obtained by solv...
A study of the non-dissipative Brownian motion in vacuum is presented. The noise source associated t...
Abstract Stochastic Inflation is an important framework for understanding the physics of de Sitter s...
The Quantum Stochastic Limit of a quantum mechanical particle coupled to a quantum field without the...
International audienceWe propose a $1/N$ expansion of Starobinsky and Yokoyama's effective stochasti...
We study the classical motion of a particle subject to a stochastic force. We then present a perturb...
The book begins with a review of Fock states for systems of identical atoms, where large numbers of ...
We identify the effective theory describing inflationary super-Hubble scales and show it to be a spe...
Abstract In this work, our prime focus is to study the one to one correspondence between the conduct...
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
The Quantum Stochastic Limit of a quantum mechanics particle coupled to a quantum field without the ...
We derive a stochastic wave equation for an inflaton in an environment of an infinite number of fiel...
We apply Starobinsky’s formalism of stochastic inflation to the case of a massless minimally coupled...
International audienceThe stochastic approach aims at describing the long-wavelength part of quantum...
Abstract: We identify the effective field theory describing the physics of super-Hubble scales and s...
Restricted Access.In quantum cosmology, a wave function ψ for a given theory can be obtained by solv...
A study of the non-dissipative Brownian motion in vacuum is presented. The noise source associated t...
Abstract Stochastic Inflation is an important framework for understanding the physics of de Sitter s...
The Quantum Stochastic Limit of a quantum mechanical particle coupled to a quantum field without the...
International audienceWe propose a $1/N$ expansion of Starobinsky and Yokoyama's effective stochasti...
We study the classical motion of a particle subject to a stochastic force. We then present a perturb...
The book begins with a review of Fock states for systems of identical atoms, where large numbers of ...
We identify the effective theory describing inflationary super-Hubble scales and show it to be a spe...
Abstract In this work, our prime focus is to study the one to one correspondence between the conduct...
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
The Quantum Stochastic Limit of a quantum mechanics particle coupled to a quantum field without the ...
We derive a stochastic wave equation for an inflaton in an environment of an infinite number of fiel...