Active particles driven by colored noise can be approximately mapped onto a system that obeys detailed balance. The e?ective interactions which can be derived for such a system allow the description of the structure and phase behavior of the active fluid by means of an e?ective free energy. In this paper we explain why the related thermodynamic results for pressure and interfacial tension do not represent the results one would measure mechanically. We derive a dynamical density functional theory, which in the steady state simultaneously validates the use of e?ective interactions and provides access to mechanical quantities. Our calculations suggest that in the colored-noise model the mechanical pressure in the coexisting phases might be unequal and the interfacial tension can become negative

Effective equilibrium states in the colored-noise model for active matter II. A unified framework for phase equilibria, structure and mechanical properties

C Maggi;
2017

Abstract

Active particles driven by colored noise can be approximately mapped onto a system that obeys detailed balance. The e?ective interactions which can be derived for such a system allow the description of the structure and phase behavior of the active fluid by means of an e?ective free energy. In this paper we explain why the related thermodynamic results for pressure and interfacial tension do not represent the results one would measure mechanically. We derive a dynamical density functional theory, which in the steady state simultaneously validates the use of e?ective interactions and provides access to mechanical quantities. Our calculations suggest that in the colored-noise model the mechanical pressure in the coexisting phases might be unequal and the interfacial tension can become negative
2017
statistical mechanics
active matter
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/332686
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