نتایج جستجو برای: reaction diffusion systems

تعداد نتایج: 1700353  

Journal: :SIAM J. Applied Dynamical Systems 2005
Yasumasa Nishiura Daishin Ueyama Tatsuo Yanagita

Existence and dynamics of chaotic pulses on 1D lattice are discussed. Traveling pulses arise typically in reaction diffusion systems like the FitzHugh-Nagumo equations. Such pulses annihilate when they collide each other. A new type of traveling pulse has been found recently in many systems where pulses bounce off like elastic balls. We consider the behavior of such a localized pattern on 1D la...

2013
Gieri Simonett Klaus Schmitt GIERI SIMONETT

We consider strongly coupled quasilinear reaction-di↵usion systems subject to nonlinear boundary conditions. Our aim is to develop a geometric theory for these types of equations. Such a theory is necessary in order to describe the dynamical behavior of solutions. In our main result we establish the existence and attractivity of center manifolds under suitable technical assumptions. The technic...

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2004
Vlad Elgart Alex Kamenev

We present an efficient method to calculate probabilities of large deviations from the typical behavior (rare events) in reaction-diffusion systems. This method is based on a semiclassical treatment of an underlying "quantum" Hamiltonian, encoding the system's evolution. To this end, we formulate the corresponding canonical dynamical system and investigate its phase portrait. This method is pre...

Journal: :Parallel Computing 1997
Jörg R. Weimar

A class of cellular automata for reaction-diiusion systems is presented. It is based on a local average for the diiusive dynamics, and closely related to nite diierence schemes. The reactive dynamics is implemented as a lookup-table with probabilistic rules. The rules are derived directly and systematically from the given diierential equations, using probabilistic rounding to enforce the discre...

Journal: :CoRR 2016
Paul Vernaza

A novel global energy model for multi-class semantic image segmentation is proposed that admits very efficient exact inference and derivative calculations for learning. Inference in this model is equivalent to MAP inference in a particular kind of vector-valued Gaussian Markov random field, and ultimately reduces to solving a linear system of linear PDEs known as a reaction-diffusion system. So...

2006
R. K. SAXENA A. M. MATHAI

The authors investigate the solution of a nonlinear reaction-diffusion equation connected with nonlinear waves. The equation discussed is more general than the one discussed recently by Manne, Hurd, and Kenkre (2000). The results are presented in a compact and elegant form in terms of Mittag-Leffler functions and generalized Mittag-Leffler functions, which are suitable for numerical computation...

Journal: :Physical review letters 2016
Thomas D Nevins Douglas H Kelley

We investigate growth of the excitable Belousov-Zhabotinsky reaction in chaotic, time-varying flows. In slow flows, reacted regions tend to lie near vortex edges, whereas fast flows restrict reacted regions to vortex cores. We show that reacted regions travel toward vortex centers faster as flow speed increases, but nonreactive scalars do not. For either slow or fast flows, reaction is promoted...

2013
Michael Hartmann Erwin Frey Jacob Halatek

2008
Paola Lecca Lorenzo Dematté

Reactiondiffusion systems are mathematical models that describe how the concentration of one or more substances distributed in space changes under the influence of local chemical reactions in which the substances are converted into each other, and diffusion which causes the substances to spread out in space. The classical representation of a reaction-diffusion system is given by semi-linear par...

Journal: :Physical review letters 2003
A Rákos M Paessens G M Schütz

We introduce a simple nonequilibrium model for a driven diffusive system with nonconservative reaction kinetics in one dimension. The steady state exhibits a phase with broken ergodicity and hysteresis which has no analog in systems investigated previously. We identify the main dynamical mode, viz., the random motion of a shock in an effective potential, which provides a unified framework for u...

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