collaborators

17 papers

cond-mat.stat-mech2026

Inertial Asynchronous Computation

Doruk Efe Gökmen, Michel Fruchart, Dmitrii Zendrikov +3

Computation is the controlled evolution of a state. Asynchronous evolutions, where all parts of the state change in their own time without stopping each other, put this control in…

physics.flu-dyn2026

Wave turbulence theory of odd fluids and solids: kinetic equations and solutions

Xander M. de Wit, Léo Touzo, Sébastien Galtier +3

The theory of wave turbulence describes the properties of physical systems composed of a set of weak-amplitude random waves interacting nonlinearly. Here, we study odd wave turbule…

physics.flu-dyn2026

Odd wave turbulence

Xander M. de Wit, Léo Touzo, Sébastien Galtier +3

Wave turbulence describes the statistical dynamics of weakly interacting waves in out-of-equilibrium systems. These systems are out of equilibrium because forcing and dissipation o…

physics.app-ph2026

Symmetry-driven Phononic Metamaterials

Simon Yves, Michel Fruchart, Romain Fleury +4

Phonons are quasiparticles associated with mechanical vibrations in materials. They are at the root of the propagation of sound and elastic waves, as well as of thermal phenomena,…

cond-mat.stat-mech2026

Information theory for dimensionality reduction in dynamical systems

Matthew S. Schmitt, Maciej Koch-Janusz, Michel Fruchart +3

The dynamics of many-body systems can often be captured in terms of only a few relevant variables. Mathematical and numerical approaches exist to identify these variables by exploi…

cond-mat.stat-mech2026

Nonreciprocal many-body physics

Michel Fruchart, Vincenzo Vitelli

Reciprocity is a fundamental symmetry present in many natural phenomena and engineered systems. Distinct situations where this symmetry is broken are typically grouped under the um…