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Active systems are characterized by a continuous production of entropy at steady state.
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M. C. Marchetti, J. F. Joanny, S. Ramaswamy, T. B. Liverpool, J. Prost, Madan Rao, and R. Aditi Simha, “Hydrodynamics of soft active matter,” Reviews of Modern Physics 85
2013
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Chandrima Ganguly and Debasish Chaudhuri, “Stochastic thermodynamics of active Brownian particles,” Physical Review E 88
2013
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2013
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Raphael Wittkowski, Adriano Tiribocchi, Joakim Stenhammar, Rosalind J. Allen, Davide Marenduzzo, and Michael E. Cates, “Scalar Φ \Phi 4 field theory for active-particle phase separation,” Nature Communications 5
2014
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2014
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2015
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2015
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2015
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2015
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Clemens Bechinger, Roberto Di Leonardo, Hartmut Löwen, Charles Reichhardt, Giorgio Volpe, and Giovanni Volpe, “Active Particles in Complex and Crowded Environments,” Reviews of Modern Physics 88
2016
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Étienne Fodor, Cesare Nardini, Michael E. Cates, Julien Tailleur, Paolo Visco, and Frédéric van Wijland, “How Far from Equilibrium Is Active Matter?” Physical Review Letters 117
2016
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2016
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Tal Agranov, Baruch Meerson, and Arkady Vilenkin, “Survival of interacting diffusing particles inside a domain with absorbing boundary,” Physical Review E 93
Lorenzo Caprini, Umberto Marini Bettolo Marconi, Andrea Puglisi, and Angelo Vulpiani, “The entropy production of Ornstein–Uhlenbeck active particles: A path integral method for correlations,” Journal of Statistical Mechanics: Theory and Experiment 2019
2019
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Lennart Dabelow, Stefano Bo, and Ralf Eichhorn, “Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutual Information,” Physical Review X 9
2019
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Laura Tociu, Étienne Fodor, Takahiro Nemoto, and Suriyanarayanan Vaikuntanathan, “How Dissipation Constrains Fluctuations in Nonequilibrium Liquids: Diffusion, Structure, and Biased Interactions,” Physical Review X 9
2019
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2019
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2016
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O. Shpielberg and E. Akkermans, “Le Chatelier Principle for Out-of-Equilibrium and Boundary-Driven Systems: Application to Dynamical Phase Transitions,” Physical Review Letters 116
2016
Cited alongside, same era.
Lior Zarfaty and Baruch Meerson, “Statistics of large currents in the Kipnis–Marchioro–Presutti model in a ring geometry,” Journal of Statistical Mechanics: Theory and Experiment 2016
2016
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Dibyendu Mandal, Katherine Klymko, and Michael R. DeWeese, “Entropy Production and Fluctuation Theorems for Active Matter,” Physical Review Letters 119
2017
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Cesare Nardini, Étienne Fodor, Elsen Tjhung, Frédéric van Wijland, Julien Tailleur, and Michael E. Cates, “Entropy Production in Field Theories without Time-Reversal Symmetry: Quantifying the Non-Equilibrium Character of Active Matter,” Physical Review X 7
2017
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F. Cagnetta, F. Corberi, G. Gonnella, and A. Suma, “Large Fluctuations and Dynamic Phase Transition in a System of Self-Propelled Particles,” Physical Review Letters 119
2017
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2017
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Yongjoo Baek, Yariv Kafri, and Vivien Lecomte, “Dynamical Symmetry Breaking and Phase Transitions in Driven Diffusive Systems,” Physical Review Letters 118
2017
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Takahiro Nemoto, Étienne Fodor, Michael E. Cates, Robert L. Jack, and Julien Tailleur, “Optimizing active work: Dynamical phase transitions, collective motion, and jamming,” Physical Review E 99
2019
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Jakub Dolezal and Robert L Jack, “Large deviations and optimal control forces for hard particles in one dimension,” Journal of Statistical Mechanics: Theory and Experiment 2019
2019
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Tal Agranov, P. L. Krapivsky, and Baruch Meerson, “Occupation-time statistics of a gas of interacting diffusing particles,” Physical Review E 99
2019
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Fernando Caballero and Michael E. Cates, “Stealth Entropy Production in Active Field Theories near Ising Critical Points,” Physical Review Letters 124
2020
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Øyvind L Borthne, Étienne Fodor, and Michael E Cates, “Time-reversal symmetry violations and entropy production in field theories of polar active matter,” New Journal of Physics 22
2020
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F. Cagnetta and E. Mallmin, “Efficiency of one-dimensional active transport conditioned on motility,” Physical Review E 101
2020
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P Chiarantoni, F Cagnetta, F Corberi, G Gonnella, and A Suma, “Work fluctuations of self-propelled particles in the phase separated state,” Journal of Physics A: Mathematical and Theoretical 53
2020
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Étienne Fodor, Takahiro Nemoto, and Suriyanarayanan Vaikuntanathan, “Dissipation controls transport and phase transitions in active fluids: Mobility, diffusion and biased ensembles,” New Journal of Physics 22
2020
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Robert L. Jack, “Ergodicity and large deviations in physical systems with stochastic dynamics,” The European Physical Journal B 93
2020
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Yuting I Li and Michael E Cates, “Steady state entropy production rate for scalar Langevin field theories,” Journal of Statistical Mechanics: Theory and Experiment 2021
2021
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Trevor GrandPre, Katherine Klymko, Kranthi K. Mandadapu, and David T. Limmer, “Entropy production fluctuations encode collective behavior in active matter,” Physical Review E 103
2021
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Yann-Edwin Keta, Étienne Fodor, Frédéric van Wijland, Michael E. Cates, and Robert L. Jack, “Collective motion in large deviations of active particles,” Physical Review E 103
2021
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Tal Agranov, Sunghan Ro, Yariv Kafri, and Vivien Lecomte, “Exact fluctuating hydrodynamics of active lattice gases—typical fluctuations,” Journal of Statistical Mechanics: Theory and Experiment 2021
2021
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Étienne Fodor, Robert L. Jack, and Michael E. Cates, “Irreversibility and Biased Ensembles in Active Matter: Insights from Stochastic Thermodynamics,” Annual Review of Condensed Matter Physics 13
2022
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J. O’Byrne, Y. Kafri, J. Tailleur, and F. van Wijland, “Time irreversibility in active matter, from micro to macro,” Nature Reviews Physics 4
2022
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Jiawei Yan, Hugo Touchette, and Grant M. Rotskoff, “Learning nonequilibrium control forces to characterize dynamical phase transitions,” Physical Review E 105
2022
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2022
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Michael E. Cates, Étienne Fodor, Tomer Markovich, Cesare Nardini, and Elsen Tjhung, “Stochastic Hydrodynamics of Complex Fluids: Discretisation and Entropy Production,” Entropy 24
2022
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