Universal non-Gaussian order parameter statistics in 2D superfluids
Abel Beregi, En Chang, Erik Rydow, Christopher J. Foot, Shinichi Sunami

TL;DR
This study experimentally confirms that the order parameter distribution in 2D Bose gases near the BKT transition converges to a universal Gumbel distribution at low temperatures, revealing non-Gaussian critical fluctuations and dynamics.
Contribution
First direct measurement of the universal non-Gaussian order parameter statistics in 2D superfluids across the BKT transition using matter-wave interferometry.
Findings
Order parameter distribution approaches a Gumbel distribution at low temperatures.
Higher moments like skewness, kurtosis, and Binder cumulant are precisely measured.
Vortex unbinding dynamics show parameter-independent scaling behavior.
Abstract
Fluctuations are an intrinsic feature of many-body systems, and their full statistical distributions reveal a wealth of information about the underlying physics. Of particular interest are non-Gaussian, extreme-value statistics that arise when nontrivial correlations and criticality dominate over the central limit theorem. Strikingly, in two-dimensional (2D) quantum fluids, such effects have been predicted to manifest in the order parameter distribution in the Berezinskii-Kosterlitz-Thouless (BKT) superfluid phase, which approaches a universal extreme-value form in the low-temperature limit. Here, we measure the order parameter statistics of 2D Bose gases across the BKT critical point using matter-wave interferometry. This allows us to confirm the predicted convergence of the observed statistics to a universal Gumbel distribution at low temperatures, to the 0.1% level of the probability…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Quantum many-body systems · Physics of Superconductivity and Magnetism
