The selective entrapment of mutually annihilating species within a phase-changing carrier fluid is explored by both analytical and numerical means. The model takes full account of the dynamic heterogeneity which arises as a result of the coupling between hydrodynamic transport, dynamic phase-transitions and chemical reactions between the participating species, in the presence of a selective droplet interface. Special attention is paid to the dynamic symmetry breaking between the mass of the two species entrapped within the expanding droplet as a function of time. It is found that selective sources are much more effective symmetry breakers than selective diffusion. The present study may be of interest for a broad variety of advection-diffusion-reaction phenomena with selective fluid interfaces, including the problem of electroweak baryogenesis.

Dynamic symmetry-breaking in mutually annihilating fluids with selective interfaces

Montessori Andrea;
2019

Abstract

The selective entrapment of mutually annihilating species within a phase-changing carrier fluid is explored by both analytical and numerical means. The model takes full account of the dynamic heterogeneity which arises as a result of the coupling between hydrodynamic transport, dynamic phase-transitions and chemical reactions between the participating species, in the presence of a selective droplet interface. Special attention is paid to the dynamic symmetry breaking between the mass of the two species entrapped within the expanding droplet as a function of time. It is found that selective sources are much more effective symmetry breakers than selective diffusion. The present study may be of interest for a broad variety of advection-diffusion-reaction phenomena with selective fluid interfaces, including the problem of electroweak baryogenesis.
2019
Istituto Applicazioni del Calcolo ''Mauro Picone''
Inglese
18
Sì, ma tipo non specificato
numerical simulations
diffusion
lattice Boltzmann methods
transport processes / heat transfer
3
info:eu-repo/semantics/article
262
Succi, Sauro; Montessori, Andrea; Falcucci, Giacomo
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Full-scale COmputational design of Porous mesoscale MATerials
   COPMAT
   H2020
   739964
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/367202
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