English

Numerical Study of Induced False Vacuum Decay at High Energies

High Energy Physics - Phenomenology 2009-10-28 v3

Abstract

We calculate numerically the probability exp[1λF(E/Esph,N/Nsph)]\exp[ {1\over\lambda} F(E/E_{sph},N/N_{sph})] of the false vacuum decay in the massive four-dimensional λϕ4-\lambda\phi^4 model from multiparticle initial states with fixed number of particles NN and energy EE greater than the height of the barrier EsphE_{sph}. We find that at E\lsim3EsphE\lsim 3E_{sph} and N\lsim0.4NsphN\lsim 0.4N_{sph} the decay is classically forbidden and thus is exponentially suppressed. We argue that the classically forbidden region extends at small NN at least up to E10EsphE\sim 10 E_{sph} and, most likely, to all energies. Our data suggest that the false vacuum decay induced by two-particle collisions is exponentially suppressed at all energies.

Keywords

Cite

@article{arxiv.hep-ph/9510310,
  title  = {Numerical Study of Induced False Vacuum Decay at High Energies},
  author = {A. N. Kuznetsov and P. G. Tinyakov},
  journal= {arXiv preprint arXiv:hep-ph/9510310},
  year   = {2009}
}

Comments

14 pages, latex, 4 PostScript figures, Factor of 2 normalization error propagating through some equations and few misprints corrected