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Universality of Bose-Einstein Condensation and Quenched Formation Dynamics

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arxiv 2304.09541 v1 pith:W7XK33OD submitted 2023-04-19 cond-mat.quant-gas astro-ph.COcond-mat.stat-mechnlin.PSquant-ph

classification cond-mat.quant-gasastro-ph.COcond-mat.stat-mechnlin.PSquant-ph
keywords quantumsystemschapterconceptscondensationdynamicsemergingfeatures
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The emergence of macroscopic coherence in a many-body quantum system is a ubiquitous phenomenon across different physical systems and scales. This Chapter reviews key concepts characterizing such systems (correlation functions, condensation, quasi-condensation) and applies them to the study of emerging non-equilibrium features in the dynamical path towards such a highly-coherent state: particular emphasis is placed on emerging universal features in the dynamics of conservative and open quantum systems, their equilibrium or non-equilibrium nature, and the extent that these can be observed in current experiments with quantum gases. Characteristic examples include symmetry-breaking in the Kibble-Zurek mechanism, coarsening and phase-ordering kinetics, and universal spatiotemporal scalings around non-thermal fixed points and in the context of the Kardar- Parisi-Zhang equation; the Chapter concludes with a brief review of the potential relevance of some of these concepts in modelling the large-scale distribution of dark matter in the universe.

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  1. A phenomenological universal expression for the condensate fraction in strongly-correlated two-dimensional Bose gases

    cond-mat.quant-gas 2025-08 conditional novelty 6.0 of 10

    The condensate fraction of 2D Bose gases is claimed to follow a universal implicit function of kinetic and quantum energies, tested by quantum Monte Carlo across eight interaction potentials.

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