Ultraviolet cascade in the thermalization of the classical phi^4 theory in 3+1 dimensions
arXiv:hep-ph/0410280 · doi:10.1103/PhysRevD.73.025014
Abstract
We investigate the dynamics of thermalization and the approach to equilibrium in the classical phi^4 theory in 3+1 spacetime dimensions. The non-equilibrium dynamics is studied by numerically solving the equations of motion in a light- cone-like discretization of the model for a broad range of initial conditions and energy densities.A smooth cascade of energy towards the ultraviolet is found to be the basic mechanism of thermalization.After an initial transient stage,at a time scale of several hundreds inverse masses,the squared of the field gradient becomes larger than the nonlinear term and a stage of universal cascade emerges. As the cascade progresses, the modes with higher wavenumbers exhibit weaker and weaker nonlinearities well described by the Hartree approximation while the infrared modes retain strong selfinteractions. Two timescales for equilibration appears.For k^2><phi^2>(t) we observe an effective thermalization with a time scale in the thousands of inverse masses and the Hartree approximation holds. By effective thermalization we mean that the observable acquires the equilibrium functional form with an effective time dependent temperature Teff, which slowly decreases with time. Infrared modes with k^2 < <phi^2>(t) equilibrate only by time scales in the millions of inverse masses. Infrared modes with k^2 < <phi^2>(t) equilibrate only by time scales in the millions.Virialization and the equation of state start to set much earlier than effective thermalization.The applicability of these results in quantum field theory for large occupation numbers and small coupling is analyzed.
47 pages, 31 figures. Presentation improved, 4 new figures
References in corpus (11)
- Prethermalization
- Turbulent Thermalization
- Quantum dynamics and thermalization for out-of-equilibrium phi^4-theory
- Chern-Simons production during preheating in hybrid inflation models
- Tachyonic preheating using 2PI-1/N dynamics and the classical approximation
- Baryon asymmetry from electroweak tachyonic preheating
- W and Higgs particle distributions during electroweak tachyonic preheating
- The approach to thermalization in the classical phi^4 theory in 1+1 dimensions: energy cascades and universal scaling
- Resonant nucleation of spatio-temporal order via parametric modal amplification
- Non-equilibrium Goldstone phenomenon in tachyonic preheating
- Out-of-equilibrium evolution of quantum fields in the hybrid model with quantum back reaction
Cited by in corpus (19)
- Constraints on dark matter particles from theory, galaxy observations and N-body simulations
- Fermionic warm dark matter produces galaxy cores in the observed scales because of quantum mechanics
- Model independent analysis of dark matter points to a particle mass at the keV scale
- Prethermalization Revealed by the Relaxation Dynamics of Full Distribution Functions
- Hubble-induced phase transitions on the lattice with applications to Ricci reheating
- The Effective Theory of Inflation in the Standard Model of the Universe and the CMB+LSS data analysis
- Particle production and reheating in the inflationary universe
- Renormalisability of the 2PI-Hartree approximation of multicomponent scalar models in the broken symmetry phase
- One to rule them all: CMB spectral distortions can probe domain walls, cosmic strings and low scale phase transitions
- Is negative kinetic energy meta-stable?
- Free streaming in mixed dark matter
- Langevin Simulation of Scalar Fields: Additive and Multiplicative Noises and Lattice Renormalization
- Cosmological evolution of warm dark matter fluctuations II: Solution from small to large scales and keV sterile neutrinos
- Renormalization of O(N) model in 1/N expansion in auxiliary field formalism
- Renormalization of 2PI resummation: a renormalization scheme approach
- The Dark Matter distribution function and Halo Thermalization from the Eddington equation in Galaxies
- Renormalization in momentum dependent resummations
- Particle yields from numerical simulations
- Axion Fragmentation on the Lattice