papers

Publications (21)

physics.ao-ph2024

Tipping detection using climate networks

Laure Moinat, Jérôme Kasparian, Maura Brunetti

The development of robust Early Warning Signals (EWS) is necessary to quantify the risk of crossing tipping points in the present-day climate change. Classically, EWS are statistic…

physics.flu-dyn2018

Viscous damping of gravity-capillary waves: Dispersion relations and nonlinear corrections

Andrea Armaroli, Debbie Eeltink, Maura Brunetti +1

We discuss the impact of viscosity on nonlinear propagation of surface waves at the interface of air and a fluid of large depth. After a survey of the available approximations of t…

physics.ao-ph2019

Co-existing climate attractors in a coupled aquaplanet

Maura Brunetti, Jérôme Kasparian, Christian Vérard

The first step in exploring the properties of dynamical systems like the Earth climate is to identify the different phase space regions where the trajectories asymptotically evolve…

physics.ao-ph2026

Climate network characterization of the AMOC edge state

Laure Moinat, Reyk Börner, Valerio Lucarini +2

The Atlantic Meridional Overturning Circulation (AMOC) has been identified as a tipping element in the Earth system. Under the current climate change scenarios, it is urgent to dev…

nlin.PS2020

Stabilization of uni-directional water-wave trains over an uneven bottom

Andrea Armaroli, Alexis Gomel, Amin Chabchoub +2

We study the evolution of nonlinear surface gravity water-wave packets developing from modulational instability over an uneven bottom. A nonlinear Schrödinger equation (NLSE) with…

physics.flu-dyn2023

Mean flow modelling in high-order nonlinear Schrödinger equations

Alexis Gomel, Corentin Montessuit, Andrea Armaroli +4

The evaluation and consideration of the mean flow in wave evolution equations are necessary for the accurate prediction of fluid particle trajectories under wave groups, with relev…