activity
20242026
collaborators

6 papers

cond-mat.soft2026

Broadband molecular dynamics simulation of fluid inertial effects in confined Brownian motion

Quentin Thomas, Clara Mefo Sop, Maxime Lavaud +3

Hydrodynamic memory governs Brownian motion over a broad range of timescales, from acoustic wave propagation at short times to diffusive relaxation at long times. While confinement…

cond-mat.soft2026

A label-free method to quantify early-stage amyloid aggregation via intrinsic phenylalanine fluorescence

Gaëlle Audéoud, Louis Moine, Laura Bonnecaze +5

The aggregation of amyloid-forming peptides is a dynamic, complex process that underlies their diverse biological activities, from physiological functions to disease-associated dys…

cond-mat.soft2025

The Hitchhiker's Guide to Differential Dynamic Microscopy

Enrico Lattuada, Fabian Krautgasser, Maxime Lavaud +2

Over nearly two decades, Differential Dynamic Microscopy (DDM) has become a standard technique for extracting dynamic correlation functions from time-lapse microscopy data, with ap…

cond-mat.soft2025

Enhanced diffusion over a periodic trap by hydrodynamic coupling to an elastic mode

Juliette Lacherez, Maxime Lavaud, Yacine Amarouchene +2

In many physical systems, degrees of freedom are coupled \emph{via} hydrodynamic forces, even in the absence of Hamiltonian interactions. A particularly important and widespread ex…

cond-mat.soft2024

Bidirectional Mamba state-space model for anomalous diffusion

Maxime Lavaud, Yosef Shokeeb, Juliette Lacherez +2

Characterizing anomalous diffusion is crucial in order to understand the evolution of complex stochastic systems, from molecular interactions to cellular dynamics. In this work, we…

cond-mat.soft2024

Observation of Brownian elastohydrodynamic forces acting on confined soft colloids

Nicolas Fares, Maxime Lavaud, Zaicheng Zhang +3

Confined motions in complex environments are ubiquitous in microbiology. These situations invariably involve the intricate coupling between fluid flow, soft boundaries, surface for…