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Emergence of Large-Scale Structures in Holographic Superfluid Turbulence

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arxiv 2402.17980 v1 pith:6FRBELZ3 submitted 2024-02-28 hep-th cond-mat.quant-gas

classification hep-thcond-mat.quant-gas
keywords vortexclustersemergenceenergyholographicinversequantumturbulence
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abstract

In two-dimensional turbulence systems, the emergence of large-scale structures holds profound physical implications, particularly as it indicates the occurrence of inverse energy cascades, thereby garnering significant attention. In this paper, we report a novel vortex clusters formation in the background of near-extreme Reissner-Nordstr$\ddot{o}$m black hole holographic model. At temperatures nearing absolute zero, we observe not only the formation of vortex clusters but also the emergence of an inverse energy cascade. Distinct from typical quantum systems, the genesis of holographic vortex clusters is rooted in unique quantum dissipation properties, characterized by the near immobilization of vortex dipoles at low temperatures. Through a comparative analysis with the dynamics of the Gross-Pitaevskii equation, our investigation enhances the understanding of inverse energy cascades under these extreme conditions, thereby broadening our comprehension of quantum turbulence.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Nonequilibrium crossover in the supercritical region from quench dynamics

    cond-mat.stat-mech 2026-04 unverdicted novelty 7.0 of 10

    Quench dynamics in a holographic superfluid reveal a nonequilibrium crossover line in the supercritical region defined by a turning point in invasion velocity.

  2. Vortices in D-dimensional anisotropic Bose-Einstein condensates: dimensional perturbation theory with hypercylindrical symmetry

    cond-mat.quant-gas 2024-11 conditional novelty 5.0 of 10

    Analytic zeroth-order dimensional perturbation theory for D-dimensional anisotropic vortex Bose-Einstein condensates yields general-D density, chemical potential, energy, critical vortex speed, and a Thomas-Fermi limit.

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