English

Schr\"odinger-Navier-Stokes equation for capillary fluids

Fluid Dynamics 2026-05-01 v2 Quantum Gases Soft Condensed Matter

Abstract

We highlight some properties of the Schr\"odinger-Navier-Stokes (SNS) equation [Salasnich, Succi, and Tiribocchi (2024)] of potential relevance for microfluidics and soft matter. Specifically, we show that the SNS equationwith generic parameters is formally equivalent to the Navier-Stokes-Korteweg equations for capillary fluids, with the equivalence established at the level of an action functional that decomposes naturally into a Korteweg conservative and a Rayleigh dissipative components, respectively. We derive the dispersion relation for sound modes, showing that the dispersive parameter controls capillary stiffness while the dissipative parameter controls viscous damping, and that the Bogoliubov dispersion relation is recovered in the quantum limit. We also derive an effective one-dimensional SNS equation for a fluid confined in a narrow capillary tube. Finally, it is argued that the SNS may facilitate the quantum simulation of complex states of flowing matter.

Cite

@article{arxiv.2604.11747,
  title  = {Schr\"odinger-Navier-Stokes equation for capillary fluids},
  author = {Luca Salasnich and Sauro Succi and Adriano Tiribocchi},
  journal= {arXiv preprint arXiv:2604.11747},
  year   = {2026}
}

Comments

11 pages

R2 v1 2026-07-01T12:06:57.955Z