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Variance sum rule for entropy production

Ivan Di Terlizzi, Marta Gironella-Torrent, Diego Herráez‐Aguilar, Timo Betz, Francisco Monroy, Marco Baiesi, Félix Ritort

2024Science65 citationsDOIOpen Access PDF

Abstract

Entropy production is the hallmark of nonequilibrium physics, quantifying irreversibility, dissipation, and the efficiency of energy transduction processes. Despite many efforts, its measurement at the nanoscale remains challenging. We introduce a variance sum rule (VSR) for displacement and force variances that permits us to measure the entropy production rate σ in nonequilibrium steady states. We first illustrate it for directly measurable forces, such as an active Brownian particle in an optical trap. We then apply the VSR to flickering experiments in human red blood cells. We find that σ is spatially heterogeneous with a finite correlation length, and its average value agrees with calorimetry measurements. The VSR paves the way to derive σ using force spectroscopy and time-resolved imaging in living and active matter.

Topics & Concepts

Entropy productionStatistical physicsNon-equilibrium thermodynamicsDissipationBrownian motionPhysicsEntropy (arrow of time)FlickerQuantum mechanicsComputer scienceOperating systemAdvanced Thermodynamics and Statistical Mechanicsthermodynamics and calorimetric analysesMicro and Nano Robotics
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