The vibrational dynamics of solids is described by phonons constituting basic collective excitations in equilibrium crystals. Here, we consider a non-equilibrium active solid, formed by self-propelled particles, which bring the system into a non-equilibrium steady-state. We identify novel vibrational collective excitations of non-equilibrium (active) origin, which coexist with phonons and dominate over them when the system is far from equilibrium. These vibrational excitations are interpreted in the framework of non-equilibrium physics, in particular, stochastic thermodynamics. We call them "entropons" because they are the modes of spectral entropy production (at a given frequency and wave vector). The existence of entropons could be verified in future experiments on dense self-propelled colloidal Janus particles and granular active matter, as well as in living systems, such as dense cell monolayers.

Entropons as collective excitations in active solids

Andrea Puglisi;
2023

Abstract

The vibrational dynamics of solids is described by phonons constituting basic collective excitations in equilibrium crystals. Here, we consider a non-equilibrium active solid, formed by self-propelled particles, which bring the system into a non-equilibrium steady-state. We identify novel vibrational collective excitations of non-equilibrium (active) origin, which coexist with phonons and dominate over them when the system is far from equilibrium. These vibrational excitations are interpreted in the framework of non-equilibrium physics, in particular, stochastic thermodynamics. We call them "entropons" because they are the modes of spectral entropy production (at a given frequency and wave vector). The existence of entropons could be verified in future experiments on dense self-propelled colloidal Janus particles and granular active matter, as well as in living systems, such as dense cell monolayers.
2023
Istituto dei Sistemi Complessi - ISC
Inglese
159
4
041102-1
041102-14
https://pubs.aip.org/aip/jcp/article/159/4/041102/2903805/Entropons-as-collective-excitations-in-active
Collective excitations; Entropy production; Non equilibrium; Non-equilibrium physics; Non-equilibrium steady state; Self-propelled particles; Spectral entropy; Stochastic thermodynamics; Vibrational dynamics; Vibrational excitation
4
info:eu-repo/semantics/article
262
Caprini, Lorenzo; Marini Bettolo Marconi, Umberto; Puglisi, Andrea; Löwen, Hartmut
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/461162
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