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arxiv: 1710.05800 · v2 · pith:IQDQZG4Znew · submitted 2017-10-16 · ❄️ cond-mat.quant-gas · gr-qc· hep-th

A rapidly expanding Bose-Einstein condensate: an expanding universe in the lab

classification ❄️ cond-mat.quant-gas gr-qchep-th
keywords expandingbose-einsteincondensatedynamicsenergyexcitationsexpansionmode
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We study the dynamics of a supersonically expanding ring-shaped Bose-Einstein condensate both experimentally and theoretically. The expansion redshifts long-wavelength excitations, as in an expanding universe. After expansion, energy in the radial mode leads to the production of bulk topological excitations -- solitons and vortices -- driving the production of a large number of azimuthal phonons and, at late times, causing stochastic persistent currents. These complex nonlinear dynamics, fueled by the energy stored coherently in one mode, are reminiscent of a type of "preheating" that may have taken place at the end of inflation.

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  1. Collective excitations in quantum gravity condensates

    gr-qc 2026-05 unverdicted novelty 6.0

    Collective excitations analogous to phonons are derived in quantum gravity condensates within a group field theory model, yielding leading beyond-mean-field corrections to emergent Friedmann dynamics.