collaborators

8 papers

cond-mat.stat-mech2026

Probing the limits of effective temperature consistency in actively driven systems

Dima Boriskovsky, Rémi Goerlich, Benjamin Lindner +1

We investigate the thermodynamic properties of a single inertial probe driven into a nonequilibrium steady-state by random collisions with self-propelled active walkers. The probe…

cond-mat.stat-mech2026

Fluctuation-response relation for a nonequilibrium system with resolved Markovian embedding

Rémi Goerlich, Antoine Tartar, Yael Roichman +1

Fluctuation-response relations must be modified to describe nonequilibrium systems with non-Markovian dynamics. Here, we experimentally demonstrate that such relation is quantitati…

cond-mat.stat-mech2026

Consistent thermodynamics reconstructed from transitions between nonequilibrium steady-states

Rémi Goerlich, Benjamin Sorkin, Dima Boriskovsky +4

Constructing a thermodynamic framework for nonequilibrium systems remains a major challenge, as quantities such as temperature and free energy often become ambiguous when inferred…

cond-mat.stat-mech2025

Piston-Like Information Engine I: Universal Features in Equilibrium

Rémi Goerlich, Gilad Pollack, Eli Flaxer +2

The ability to measure the stochastic degrees of freedom of a thermal system enables the extraction of energy from an equilibrium heat bath. This is the underlying principle of Max…

cond-mat.stat-mech2025

Stochastic Resetting vs. Thermal Equilibration: Faster Relaxation, Different Destination

Nir Sherf, Remi Goerlich, Barak Hirshberg +1

Stochastic resetting is known for its ability to accelerate search processes and induce non-equilibrium steady states. Here, we compare the relaxation times and resulting steady st…

cond-mat.stat-mech2025

Time-energy tradeoff in stochastic resetting using optimal control

Rémi Goerlich, Kristian Stølevik Olsen, Hartmut Löwen +1

Stochastic resetting is a driving mechanism that is known to minimize the first passage time to reach a target, at the cost of energy expenditure. The choice of the physical implem…