English

Fate of the false vacuum: towards realization with ultra-cold atoms

Quantum Gases 2015-06-24 v3

Abstract

Quantum decay of a relativistic scalar field from a false vacuum is a fundamental idea in quantum field theory. It is relevant to models of the early Universe, where the nucleation of bubbles gives rise to an inflationary universe and the creation of matter. Here we propose a laboratory test using an experimental model of an ultra-cold spinor Bose gas. A false vacuum for the relative phase of two spin components, serving as the unstable scalar field, is generated by means of a modulated radio-frequency coupling of the spin components. Numerical simulations demonstrate the spontaneous formation of true vacuum bubbles with realistic parameters and time-scales.

Keywords

Cite

@article{arxiv.1408.1163,
  title  = {Fate of the false vacuum: towards realization with ultra-cold atoms},
  author = {O. Fialko and B. Opanchuk and A. I. Sidorov and P. D. Drummond and J. Brand},
  journal= {arXiv preprint arXiv:1408.1163},
  year   = {2015}
}

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4 figures