collaborators

9 papers

physics.flu-dyn2026

Intermittency in Shell Models of Turbulent Cascades: from Single-Branch to Multi-Branch

Flavio Tuteri, Sergio Chibbaro, Alexandros Alexakis

Intermittency is one of the central features of turbulent transfer: the multi-scale energy cascade is mediated by rare and intense fluctuations. We investigate this phenomenon in a…

physics.flu-dyn2026

Sub-Kolmogorov Intermittency and Multifractal Dissipation in Multiphase Turbulence

Marco Crialesi-Esposito, Alienor Riviere, Sergio Chibbaro

Multiphase turbulence displays stronger intermittency than its single-phase counterpart, yet the origin and geometrical organization of its most intense small-scale fluctuations re…

cond-mat.stat-mech2026

Resonant interactions in the -FPUT lattice with site-dependent coefficients

Lorenzo Migliorelli, Giovanni Dematteis, Sergio Chibbaro +1

The wave turbulence framework has proven to be an effective tool for analyzing certain features of nonlinear energy transfer in one-dimensional nonlinear chains. In this work, we e…

physics.flu-dyn2026

Two-point enstrophy dynamics in homogeneous isotropic turbulence

Gabriele Boga, Carlos B. da Silva, Sergio Chibbaro +1

In the present work we investigate the multiscale dynamics of enstrophy in homogeneous isotropic turbulence by exploiting the two-point formalism provided by the Kármán-Howarth-M…

physics.flu-dyn2026

Turbulent pair dispersion with Stochastic Generative Diffusion Models

Andrei Pantea, Luca Biferale, Michele Buzzicotti +3

Recent advances in data-driven modeling have shown that diffusion models can successfully generate synthetic Lagrangian trajectories in turbulent flows. Building on this progress,…

physics.flu-dyn2026

Multi-branch Shell Models of Two-Dimensional Turbulence exhibit Dual Energy-Enstrophy Cascades

Flavio Tuteri, Sergio Chibbaro, Alexandros Alexakis

Classical shell models of turbulence do not display dual cascade - inverse of energy and direct of enstrophy - because they fail to reproduce the right thermal spectra. We propose…