collaborators

8 papers

cond-mat.stat-mech2026

Geometric decomposition of information flow: New insights into information thermodynamics

Yoh Maekawa, Ryuna Nagayama, Kohei Yoshimura +1

We propose a decomposition of information flow into housekeeping and excess components for autonomous bipartite systems described by Markov jump processes. We introduce this decomp…

cond-mat.stat-mech2026

Duality between dissipation-coherence trade-off and thermodynamic speed limit based on thermodynamic uncertainty relation for stochastic limit cycles

Ryuna Nagayama, Sosuke Ito

We derive two fundamental trade-offs for general stochastic limit cycles in the weak-noise limit. The first is the dissipation-coherence trade-off, which was discovered and proved…

q-bio.PE2026

Diagrammatic expressions for steady-state distribution and static responses in population dynamics

Koya Katayama, Ryuna Nagayama, Sosuke Ito

One of the fundamental questions in population dynamics is how biological populations respond to environmental perturbations. In population dynamics, the mean fitness and the fract…

cond-mat.stat-mech2025

Geometric decomposition of information flow for overdamped Langevin systems and optimal transport in subsystems

Sosuke Ito, Yoh Maekawa, Ryuna Nagayama +2

Information flow between subsystems is a central concept in information thermodynamics, which provides the second-law-like inequalities for subsystems. This paper discusses the geo…

cond-mat.stat-mech2025

Generalized free energy and excess/housekeeping decomposition in nonequilibrium systems: from large deviations to thermodynamic speed limits

Artemy Kolchinsky, Andreas Dechant, Kohei Yoshimura +1

In genuine nonequilibrium systems that undergo continuous driving, the thermodynamic forces are nonconservative, meaning they cannot be described by any free energy potential. None…

cond-mat.stat-mech2025

Thermodynamic Geometric Constraint on the Spectrum of Markov Rate Matrices

Guo-Hua Xu, Artemy Kolchinsky, Jean-Charles Delvenne +1

The spectrum of Markov generators encodes physical information beyond simple decay and oscillation, which reflects irreversibility and governs the structure of correlation function…