English

Universality, scaling and collapse in supercritical fluids

Soft Condensed Matter 2020-01-01 v1

Abstract

The Supercritical Fluid (SCF) is known to exhibit salient dynamic and thermodynamic crossovers and inhomogeneous molecular distribution. But the question as to what basic physics underlies these microscopic and macroscopic anomalies remains open. Here, using an order parameter extracted by machine learning, the fraction of gas-like (or liquid-like) molecules, we find simplicity and universality in SCF: First, all isotherms of a given fluid collapse onto a single master curve described by a scaling relation. The observed power law holds from the high-temperature and pressure regime down to the critical point where it diverges. Second, phase diagrams of different compounds collapse onto their master curves by the same scaling exponent, thereby demonstrating a putative law of corresponding supercritical states in simple fluids. The reported results support a model of the SCF as a mixture of two interchangeable microstates, whose spatiotemporal dynamics gives rise to unique macroscopic properties.

Keywords

Cite

@article{arxiv.1902.08360,
  title  = {Universality, scaling and collapse in supercritical fluids},
  author = {Min Young Ha and Tae Jun Yoon and Tsvi Tlusty and YongSeok Jho and Won Bo Lee},
  journal= {arXiv preprint arXiv:1902.08360},
  year   = {2020}
}

Comments

10 pages, 2 figures

R2 v1 2026-06-23T07:47:53.437Z