arXiv · 1508.07773
Phase order in superfluid helium films
Abstract
Classic experimental data on helium films are transformed to estimate a finite-size phase order parameter that measures the thermal degradation of the condensate fraction in the two-dimensional superfluid. The order parameter is found to evolve thermally with the exponent $\beta = 3 \pi^2/128$, a characteristic, in analogous magnetic systems, of the Berezinskii-Kosterlitz-Thouless (BKT) phase transition. Universal scaling near the BKT fixed point generates a collapse of experimental data on helium and ferromagnetic films, and implies new experiments and theoretical protocols to explore the phase order. These results give a striking example of experimental finite-size scaling in a critical system that is broadly relevant to two-dimensional Bose fluids.
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Steven T. Bramwell, Michael F. Faulkner, Peter C. W. Holdsworth, Andrea Taroni. 2015-08-31. Phase order in superfluid helium films. https://doi.org/10.1209/0295-5075%2F112%2F56003
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