Entropons as collective excitations in active solids
ORAL
Abstract
The vibrational dynamics of solids is described by phonons constituting basic collective excitations in equilibrium crystals. Here we consider an active crystal composed of self-propelled particles which bring the system into a non-equilibrium steady-state governed by entropy production. Calculating the entropy production spectrum, we put forward the picture of "entropons", which are vibrational collective excitations responsible for entropy production. Entropons are purely generated by activity and coexist with phonons but dominate over them for large self-propulsion strength. The existence of entropons can be verified in experiments on dense self-propelled colloidal Janus-particles and granular active matter, as well as in living systems such as dense cell monolayers.
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Publication: arXiv:2207.02369
Presenters
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Hartmut Löwen
Heinrich-Heine-Universität Düsseldorf, HHU Düsseldorf
Authors
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Hartmut Löwen
Heinrich-Heine-Universität Düsseldorf, HHU Düsseldorf
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Lorenzo Caprini
Heinrich-Heine-Universität Düsseldorf, University of Dusseldorf
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Andrea Puglisi
University of Rome
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Umberto Marini Bettolo Marconi
Università di Camerino, University of Camerino