Bunching, clustering, and the buildup of few-body correlations in a quenched unitary Bose gas

Publication date

2019-04

Authors

Colussi, V. E.
Van Zwol, BEISNI 0000000512642753
D'Incao, J. P.
Kokkelmans, S. J. J. M. F.

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Article
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Abstract

We study the growth of two- and three-body correlations in an ultracold Bose gas quenched to unitarity. This is encoded in the dynamics of the two- and three-body contacts analyzed in this work. Via a set of relations connecting many-body correlations dynamics with few-body models, signatures of the Efimov effect are mapped out as a function of evolution time at unitarity over a range of atomic densities $n$. For the thermal resonantly interacting Bose gas, we find that atom-bunching leads to an enhanced growth of few-body correlations. These atom-bunching effects also highlight the interplay between few-body correlations that occurs before genuine many-body effects enter on Fermi timescales.

Keywords

cond-mat.quant-gas

Citation

Colussi, V E, Zwol, B E V, D'Incao, J P & Kokkelmans, S J J M F 2019, 'Bunching, clustering, and the buildup of few-body correlations in a quenched unitary Bose gas', Physical Review A - Atomic, Molecular, and Optical Physics, vol. 99, no. 4, 043604, pp. 1-13. https://doi.org/10.1103/PhysRevA.99.043604