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dc.contributor.author Friesen, Martin
dc.contributor.author Kondratiev, Yuri
dc.date.accessioned 2024-11-08T10:28:33Z
dc.date.available 2024-11-08T10:28:33Z
dc.date.issued 2019
dc.identifier.citation Friesen, M. Weak-coupling limit for ergodic environments / M. Friesen, Yu. Kondratiev // Methods of Functional Analysis and Topology : Quarterly journal. – 2019. – Vol. 25, № 2. – pp. 118-133. uk
dc.identifier.uri http://enpuir.npu.edu.ua/handle/123456789/46661
dc.description.abstract The main aim of this work is to establish an averaging principle for a wide class of interacting particle systems in the continuum. This principle is an important step in the analysis of Markov evolutions and is usually applied for the associated semigroups related to backward Kolmogorov equations, c.f. [27]. Our approach is based on the study of forward Kolmogorov equations (a.k.a. Fokker-Planck equations). We describe a system evolving as a Markov process on the space of finite configurations, whereas its rates depend on the actual state of another (equilibrium) process on the space of locally finite configurations. We will show that ergodicity of the environment process implies the averaging principle for the solutions of the coupled Fokker-Planck equations. uk
dc.description.abstract uk
dc.language.iso en uk
dc.subject Averaging principle uk
dc.subject Fokker-Planck equation uk
dc.subject interacting particle systems uk
dc.subject weak-coupling uk
dc.subject random evolution uk
dc.subject uk
dc.subject uk
dc.subject uk
dc.subject uk
dc.subject uk
dc.title Weak-coupling limit for ergodic environments uk
dc.title.alternative uk
dc.type Article uk


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Показати скорочений опис матеріалу