AbstractWe study the time evolution of correlation functions in closed quantum systems for nonequilibrium ensembles of initial conditions. For a scalar quantum field theory we show that generic time-reversal invariant evolutions approach equilibrium at large times. The calculation provides a first principles justification that the large-time behavior of closed macroscopic quantum systems can be effectively described by thermal ensemble averages
We discuss differential-- versus integral--equation based methods describing out--of thermal equilib...
4 pages, 3 figures.International audienceWe study the real-time evolution of a self-interacting O(N)...
4 pages, 3 figures.International audienceWe study the real-time evolution of a self-interacting O(N)...
We study the time evolution of correlation functions in closed quantum systems for nonequilibrium en...
AbstractWe study the time evolution of correlation functions in closed quantum systems for nonequili...
We compute the nonequilibrium real-time evolution of an O(N)-symmetric scalar quantum field theory f...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
We review recent developments for the description of far-from-equilibrium dynamics of quantum fields...
We consider the time evolution of nonequilibrium quantum scalar fields in the O(N) model, using the ...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
Nonperturbative dynamics of quantum fields out of equilibrium is often described by the time evoluti...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
We discuss the renormalization of the initial value problem in Nonequilibrium Quantum Field Theory w...
We discuss the renormalization of the initial value problem in Nonequilibrium Quantum Field Theory w...
We discuss differential-- versus integral--equation based methods describing out--of thermal equilib...
4 pages, 3 figures.International audienceWe study the real-time evolution of a self-interacting O(N)...
4 pages, 3 figures.International audienceWe study the real-time evolution of a self-interacting O(N)...
We study the time evolution of correlation functions in closed quantum systems for nonequilibrium en...
AbstractWe study the time evolution of correlation functions in closed quantum systems for nonequili...
We compute the nonequilibrium real-time evolution of an O(N)-symmetric scalar quantum field theory f...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
We review recent developments for the description of far-from-equilibrium dynamics of quantum fields...
We consider the time evolution of nonequilibrium quantum scalar fields in the O(N) model, using the ...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
Nonperturbative dynamics of quantum fields out of equilibrium is often described by the time evoluti...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
We discuss the renormalization of the initial value problem in Nonequilibrium Quantum Field Theory w...
We discuss the renormalization of the initial value problem in Nonequilibrium Quantum Field Theory w...
We discuss differential-- versus integral--equation based methods describing out--of thermal equilib...
4 pages, 3 figures.International audienceWe study the real-time evolution of a self-interacting O(N)...
4 pages, 3 figures.International audienceWe study the real-time evolution of a self-interacting O(N)...