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Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction

Dissipative solitons are local excitations of nonlinear continuous systems which emerge due to a flux of energy or matter. Although they are continuous entities, dissipative solitons in reaction diffusion systems behave like particles: They are generated or annihilated as a whole, propagate with a w...

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Detalles Bibliográficos
Autor principal: Liehr, Andreas W
Lenguaje:eng
Publicado: Springer 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-642-31251-9
http://cds.cern.ch/record/1537777
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author Liehr, Andreas W
author_facet Liehr, Andreas W
author_sort Liehr, Andreas W
collection CERN
description Dissipative solitons are local excitations of nonlinear continuous systems which emerge due to a flux of energy or matter. Although they are continuous entities, dissipative solitons in reaction diffusion systems behave like particles: They are generated or annihilated as a whole, propagate with a well-defined velocity and interact with each other, which can lead to the formation of bound states, e.g. This book introduces dissipative solitons in the context of pattern formation, discusses experimental findings in chemical and physical systems, deduces a phenomenological model of dissipative solitons from basic principles, analyzes their dynamics and interaction from a theoretical point of view and verifies these finding in an experimental system by means of stochastic data analysis. Finally, the mechanisms of annihilation and generation are explained on the basis of simulations. Theoretical considerations focus on a certain family of reaction diffusion models with the result such that basic and advanced analytical methods can be introduced from scratch and can be followed down to computational results.
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spelling cern-15377772021-04-21T22:49:32Zdoi:10.1007/978-3-642-31251-9http://cds.cern.ch/record/1537777engLiehr, Andreas WDissipative solitons in reaction diffusion systems: mechanisms, dynamics, interactionGeneral Theoretical PhysicsDissipative solitons are local excitations of nonlinear continuous systems which emerge due to a flux of energy or matter. Although they are continuous entities, dissipative solitons in reaction diffusion systems behave like particles: They are generated or annihilated as a whole, propagate with a well-defined velocity and interact with each other, which can lead to the formation of bound states, e.g. This book introduces dissipative solitons in the context of pattern formation, discusses experimental findings in chemical and physical systems, deduces a phenomenological model of dissipative solitons from basic principles, analyzes their dynamics and interaction from a theoretical point of view and verifies these finding in an experimental system by means of stochastic data analysis. Finally, the mechanisms of annihilation and generation are explained on the basis of simulations. Theoretical considerations focus on a certain family of reaction diffusion models with the result such that basic and advanced analytical methods can be introduced from scratch and can be followed down to computational results.Springeroai:cds.cern.ch:15377772013
spellingShingle General Theoretical Physics
Liehr, Andreas W
Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
title Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
title_full Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
title_fullStr Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
title_full_unstemmed Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
title_short Dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
title_sort dissipative solitons in reaction diffusion systems: mechanisms, dynamics, interaction
topic General Theoretical Physics
url https://dx.doi.org/10.1007/978-3-642-31251-9
http://cds.cern.ch/record/1537777
work_keys_str_mv AT liehrandreasw dissipativesolitonsinreactiondiffusionsystemsmechanismsdynamicsinteraction