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20182026
most citedDisentangling temperature and Reynolds number effects in quantum turbulence

4 citations · 4 across the 2 of their papers we have counts for

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physics.flu-dyn2026

Nonlocal energy transfer mechanism in three-dimensional quantum turbulence

Elliot Bes, Guillaume Balarac, Juan Ignacio Polanco

We investigate the kinetic energy cascade in zero-temperature quantum turbulence. Using simple theoretical arguments and unprecedented numerical simulations, we unveil an universal…

physics.flu-dyn2025

Disentangling temperature and Reynolds number effects in quantum turbulence

Juan Ignacio Polanco, Philippe-E. Roche, Luminita Danaila +1

The interplay between viscous and frictional dissipation is key to understanding quantum turbulence dynamics in superfluid He. Based on a coarse-grained two-fluid description,…

physics.flu-dyn2020

Intermittency of velocity circulation in quantum turbulence

Nicolás P. Müller, Juan Ignacio Polanco, Giorgio Krstulovic

The velocity circulation, a measure of the rotation of a fluid within a closed path, is a fundamental observable in classical and quantum flows. It is indeed a Lagrangian invariant…

physics.flu-dyn2020

Counterflow-Induced Inverse Energy Cascade in Three-Dimensional Superfluid Turbulence

Juan Ignacio Polanco, Giorgio Krstulovic

Finite-temperature quantum turbulence is often described in terms of two immiscible fluids that can flow with a non-zero mean relative velocity. Such out-of-equilibrium state is kn…

physics.flu-dyn2018

Relative dispersion of particle pairs in turbulent channel flow

Juan Ignacio Polanco, Ivana Vinkovic, Nickolas Stelzenmuller +2

Lagrangian tracking of particle pairs is of fundamental interest in a large number of environmental applications dealing with contaminant dispersion and passive scalar mixing. The…