Litcius/Paper detail

Active engines: Thermodynamics moves forward

Étienne Fodor, Michael E. Cates

2021Europhysics Letters (EPL)63 citationsDOIOpen Access PDF

Abstract

Abstract The study of thermal heat engines was pivotal to establishing the principles of equilibrium thermodynamics, with implications far wider than only engine optimization. For nonequilibrium systems, which by definition dissipate energy even at rest, how to best convert such dissipation into useful work is still largely an outstanding question, with similar potential to illuminate general physical principles. We review recent theoretical progress in studying the performances of engines operating with active matter, where particles are driven by individual self-propulsion. We distinguish two main classes, either autonomous engines exploiting a particle current, or cyclic engines applying periodic transformation to the system, and present the strategies put forward so far for optimization. We delineate the limitations of previous studies, and propose some future perspectives, with a view to building a consistent thermodynamic framework far from equilibrium.

Topics & Concepts

Heat engineNon-equilibrium thermodynamicsWork (physics)DissipationThermalPhysicsThermal management of electronic devices and systemsEnergy (signal processing)Computer scienceStatistical physicsThermodynamic processThermodynamic systemEnergy transformationTransformation (genetics)Current (fluid)Thermal equilibriumThermal energyCarnot cycleEngineeringParticle (ecology)Thermodynamic temperatureSecond law of thermodynamicsAdvanced Thermodynamics and Statistical MechanicsMicro and Nano RoboticsControl and Stability of Dynamical Systems