collaborators

6 papers

cond-mat.stat-mech2026

Stochastic thermodynamics for classical non-Markov jump processes

Kiyoshi Kanazawa, Andreas Dechant

Stochastic thermodynamics investigates energetic and entropic bounds in small systems, but its foundational results rely on the Markov (memoryless) assumption. Although the Markov…

cond-mat.stat-mech2026

Renormalized entropy production for optimal transport in jump processes: Make conservative forces optimal again

Andreas Dechant, Jann van der Meer

For continuous-space diffusion processes, there is a strong connection between conservative forces and entropy production. For a given time evolution of the system's state, the ent…

cond-mat.stat-mech2026

Markovian thermodynamics of non-Markovian Langevin equations

Andreas Dechant, Kiyoshi Kanazawa

We develop the thermodynamics of non-Markovian generalized Langevin equations by embedding them in a high-dimensional Markovian representation involving auxiliary degrees of freedo…

cond-mat.stat-mech2026

Near-optimality of conservative driving in discrete systems

Jann van der Meer, Andreas Dechant

Transferring a physical system from an initial to a final state while minimizing energetic losses is an interdisciplinary control problem that bridges stochastic thermodynamics and…

cond-mat.stat-mech2025

Entropy production and non-Gaussianity of fast processes at weak damping

Mario A. Ciampini, Jakob Rieser, Nikolai Kiesel +1

We present a method of estimating the rate of entropy production in underdamped dynamics by decomposing it into contributions originating in different non-equilibrium effects. Spec…

cond-mat.stat-mech2025

Finite-frequency fluctuation-response inequality

Andreas Dechant

We derive an inequality relating the finite-frequency linear response and fluctuations of an observable in a physical system. The relation holds for arbitrary observables and pertu…