6 papers
Thermodynamic Length in Stochastic Thermodynamics of Far-From-Equilibrium Systems: Unification of Fluctuation Relation and Thermodynamic Uncertainty Relation
Atul Tanaji Mohite, Heiko Rieger
The Boltzmann distribution for an equilibrium system constrains the statistics of the system by the energetics. Despite the non-equilibrium generalization of the Boltzmann distribu…
Stochastic Thermodynamics of Non-reciprocally Interacting Particles and Fields
Atul Tanaji Mohite, Heiko Rieger
Nonreciprocal interactions that violate Newton's law 'actio=reactio' are ubiquitous in nature and are currently intensively investigated in active matter, chemical reaction network…
Thermodynamically Consistent Coarse-graining: from Interacting Particles to Fields via Second Quantization
Atul Tanaji Mohite, Heiko Rieger
We systematically derive an exact coarse-grained description for interacting particles with thermodynamically consistent stochastic dynamics, applicable across different observatio…
Generalized Finite-time Optimal Control Framework in Stochastic Thermodynamics
Atul Tanaji Mohite, Heiko Rieger
Optimal processes in stochastic thermodynamics represent a frontier for understanding the control and design of non-equilibrium systems, with broad practical applications in biolog…
Minimum Action Principle for Entropy Production Rate of Far-From-Equilibrium Systems
Atul Tanaji Mohite, Heiko Rieger
The Boltzmann distribution connects the energetics of an equilibrium system with its statistical properties, and it is desirable to have a similar principle for non-equilibrium sys…
Quantifying dissipation in flocking dynamics: When tracking internal states matters
Karel Proesmans, Gianmaria Falasco, Atul Tanaji Mohite +2
Aligning self-propelled particles undergo a nonequilibrium flocking transition from apolar to polar phases as their interactions become stronger. We propose a thermodynamically con…