Time evolution of correlation functions and thermalization
arXiv:hep-ph/9907533 · doi:10.1103/PhysRevD.60.105026
Abstract
We investigate the time evolution of a classical ensemble of isolated periodic chains of O(N)-symmetric anharmonic oscillators. Our method is based on an exact evolution equation for the time dependence of correlation functions. We discuss its solutions in an approximation which retains all contributions in next-to-leading order in a 1/N expansion and preserves time reflection symmetry. We observe effective irreversibility and approximate thermalization. At large time the system approaches stationary solutions in the vicinity of, but not identical to, thermal equilibrium. The ensemble therefore retains some memory of the initial condition beyond the conserved total energy. Such a behavior with incomplete thermalization is referred to as "mesoscopic dynamics". It is expected for systems in a small volume. Surprisingly, we find that the nonthermal asymptotic stationary solutions do not change for large volume. This raises questions on Boltzmann's conjecture that macroscopic isolated systems thermalize.
40 pages, 9 figures
Cited by in corpus (25)
- Prethermalization
- Prethermalization and universal dynamics in near-integrable quantum systems
- Chemical Freeze-out and the QCD Phase Transition Temperature
- Parametric resonance in quantum field theory
- Thermalization of Quantum Fields from Time-Reversal Invariant Evolution Equations
- Quantum quench in interacting field theory: a self-consistent approximation
- Exact and Truncated Dynamics in Nonequilibrium Field Theory
- Schwinger-Dyson approach to non-equilibrium classical field theory
- On Thermalization in Classical Scalar Field Theory
- Resumming the large-N approximation for time evolving quantum systems
- Universal dynamics on the way to thermalisation
- Non-thermal fixed points: Universal dynamics far from equilibrium
- Tuning universality far from equilibrium
- Primordial cosmic fluctuations for variable gravity
- Classical Limit of Time-Dependent Quantum Field Theory-a Schwinger-Dyson Approach
- Cosmic fluctuations from quantum effective action
- Large N Quantum Time Evolution Beyond Leading Order
- Relaxation of 2+1 dimensional classical O(2) symmetric scalar fields
- The renormalized and Renormalization-Group invariant Hartree-Fock approximation
- Can observations look back to the beginning of inflation?
- Nonequilibrium Evolution of Correlation Functions: A Canonical Approach
- Parallel algorithm with spectral convergence for nonlinear integro-differential equations
- Classical evolution of fractal measures on the lattice
- Classical evolution of fractal measures generated by a scalar field on the lattice
- Improved Hartree--Fock resummations and spontaneous symmetry breaking