On Thermalization in Classical Scalar Field Theory
arXiv:hep-ph/0003262 · doi:10.1016/S0550-3213(00)00447-8
Abstract
Thermalization of classical fields is investigated in a ϕ^4 scalar field theory in 1+1 dimensions, discretized on a lattice. We numerically integrate the classical equations of motion using initial conditions sampled from various nonequilibrium probability distributions. Time-dependent expectation values of observables constructed from the canonical momentum are compared with thermal ones. It is found that a closed system, evolving from one initial condition, thermalizes to high precision in the thermodynamic limit, in a time-averaged sense. For ensembles consisting of many members with the same energy, we find that expectation values become stationary - and equal to the thermal values - in the limit of infinitely many members. Initial ensembles with a nonzero (noncanonical) spread in the energy density or other conserved quantities evolve to noncanonical stationary ensembles. In the case of a narrow spread, asymptotic values of primary observables are only mildly affected. In contrast, fluctuations and connected correlation functions will differ substantially from the canonical values. This raises doubts on the use of a straightforward expansion in terms of 1PI-vertex functions to study thermalization.
17 pages with 6 eps figures
References in corpus (2)
Cited by in corpus (50)
- Prethermalization
- Turbulent Thermalization
- Gravitational waves from vacuum first-order phase transitions: from the envelope to the lattice
- Controlled nonperturbative dynamics of quantum fields out of equilibrium
- Relativistic Turbulence: A Long Way from Preheating to Equilibrium
- Classical aspects of quantum fields far from equilibrium
- Gravitational waves from vacuum first order phase transitions II: from thin to thick walls
- The Development of Equilibrium After Preheating
- Affinity for Scalar Fields to Dissipate
- Information Content of Spontaneous Symmetry Breaking
- Equilibration in phi^4 theory in 3+1 dimensions
- Primordial Black Holes from Supercooled Phase Transitions
- Exact and Truncated Dynamics in Nonequilibrium Field Theory
- Information-Entropic Signature of the Critical Point
- The approach to thermalization in the classical phi^4 theory in 1+1 dimensions: energy cascades and universal scaling
- Thermalization in a Hartree Ensemble Approximation to Quantum Field dynamics
- Bose Einstein condensation of the classical axion field in cosmology?
- Typical state of an isolated quantum system with fixed energy and unrestricted participation of eigenstates
- Resonant Nucleation
- Bubbling the False Vacuum Away
- Non-thermal statistics in isolated quantum spin clusters after a series of perturbations
- Non-thermal production of Dark Matter after Inflation
- Symmetric and Asymmetric Reheating
- Ultraviolet cascade in the thermalization of the classical phi^4 theory in 3+1 dimensions
- Primordial cosmic fluctuations for variable gravity
- Statistical mechanics of one-dimensional quantum droplets
- Langevin Simulation of Scalar Fields: Additive and Multiplicative Noises and Lattice Renormalization
- Nonequilibrium evolution in scalar O(N) models with spontaneous symmetry breaking
- Schwinger pair production and string breaking in non-Abelian gauge theory from real-time lattice improved Hamiltonians
- Cosmic fluctuations from quantum effective action
- Attractive vs. repulsive interactions in the Bose-Einstein condensation dynamics of relativistic field theories
- Correlation Entropy of an Interacting Quantum Field and H-theorem for the O(N) Model
- Quantum particles from classical statistics
- Dynamical behavior of spatially inhomogeneous relativistic quantum field theory in the Hartree approximation
- Cosmology from pregeometry
- Non-equilibrium field theory
- Stationarity, soft ergodicity, and entropy in relativistic systems
- Relaxation of 2+1 dimensional classical O(2) symmetric scalar fields
- Expanding non homogeneous configurations of the model
- The effect of memory on relaxation in a scalar field theory
- Can observations look back to the beginning of inflation?
- Nonequilibrium Evolution of Correlation Functions: A Canonical Approach
- Stability of Quantum Statistical Ensembles with Respect to Local Measurements
- An alternative to the conventional micro-canonical ensemble
- Classical field techniques for condensates in one-dimensional rings at finite temperatures
- The role of dissipation in biasing the vacuum selection in quantum field theory at finite temperature
- Classical evolution of fractal measures on the lattice
- Particle yields from numerical simulations
- Renormalized waves and thermalization of the Klein-Gordon equation: What sound does a nonlinear string make?
- Quantifying Stability of Quantum Statistical Ensembles