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Quantum simulations of the early universe

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posted on 2024-07-09, 16:28 authored by Bogdan Opanchuk, Rodney Polkinghorne, Oleksandr Fialko, Joachim Brand, Peter DrummondPeter Drummond
A procedure is described whereby a linearly coupled spinor Bose condensate can be used as a physically accessible quantum simulator of the early universe. In particular, an experiment to generate an analog of an unstable vacuum in a relativistic scalar field theory is proposed. This is related to quantum theories of the inflationary phase of the early universe. There is an unstable vacuum sector whose dynamics correspond to the quantum sine-Gordon equations in one, two or three space dimensions. Numerical simulations of the expected behavior are reported using a truncated Wigner phase-space method, giving evidence for the dynamical formation of complex spatial clusters. Preliminary results showing the dependence on coupling strength, condensate size and dimensionality are obtained.

Funding

Australian Research Council

Royal Society of New Zealand

History

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PDF (Accepted manuscript)

ISSN

0003-3804

Journal title

ANNALEN DER PHYSIK

Volume

525

Issue

10-11

Pagination

866-876

Publisher

Wiley

Copyright statement

Copyright © 2013 Wiley VCH Verlag GmbH & Co. KGaA, Weinheim. The accepted version of the following article: Opanchuk, B, Polkinghorne, R, Fialko, O, Brand, J and Drummond, PD 2013, ‘Quantum simulations of the early universe’, Annalen der Physik, Vol. 525, no. 10-11 (Nov 2013), pp. 866-876, which has been published in final form at http://doi.org/10.1002/andp.201300113

Language

eng

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