English

False vacuum decay in the 1+1 dimensional $\varphi^4$ theory

High Energy Physics - Theory 2022-07-14 v2 Statistical Mechanics

Abstract

The false vacuum is a metastable state that can occur in quantum field theory, and its decay was first studied semi-classically by Coleman. In this work we consider the 1+1 dimensional φ4\varphi^4 theory, which is the simplest model that provides a realisation of this problem. We realise the decay as a quantum quench and study the subsequent evolution using a truncated Hamiltonian approach. In the thin wall limit, the decay rate can be described in terms of the mass of the kink interpolating between the vacua in the degenerate limit, and the energy density difference between the false and true vacuum once the degeneracy is lifted by a symmetry breaking field, a.k.a. the latent heat. We demonstrate that the numerical simulations agree well with the theoretical prediction for several values of the coupling in a range of the value of the latent heat, apart from a normalisation factor which only depends on the interaction strength.

Keywords

Cite

@article{arxiv.2205.15345,
  title  = {False vacuum decay in the 1+1 dimensional $\varphi^4$ theory},
  author = {Dávid Szász-Schagrin and Gábor Takács},
  journal= {arXiv preprint arXiv:2205.15345},
  year   = {2022}
}

Comments

10 pages, 9 figures; v2: new results added, discussion extended

R2 v1 2026-06-24T11:33:37.313Z