A billiard problem problem in nonlinear and nonquilibrium systems
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概要
- 論文の詳細を見る
In this paper a billiard problem in nonlinear and nonequilibrium systems is investigated. This is an interesting problem where a traveling pulse solution behaves as if it is a billiard ball at a glance in some kind of reaction-diffusion system in a rectangular domain. We would like to elucidate the characteristic properties of the solution of this system. For the purpose, as the first step, we try to make a reduced model of discrete dynamical system having the important properties which the original system must have. In this paper we present a discrete toy model, which is reduced intuitively as one of the candidates by use of numerical experiments and careful observation of the solutions. Moreover, we discuss about the similar and important points between the solution in the original ordinary differential equation (which describes the pulse behavior) and the one in the toy model by computing numerically the characteristic quantities in view of the dynamical system, for example, global and local Lyapunov exponents and Lyapunov dimensions. As a result, we elucidate that the system possesses an intermittent-type chaotic attractor.
- 広島大学の論文
著者
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Ohnishi Isamu
Department Of Mathematical And Life Sciences Graduate School Of Science Hiroshima University
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Ohnishi Isamu
Department Of Computer Sciences And Information Mathematics Faculty Of Electro-communications The Un
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Miyaji Tomoyuki
Department Of Mathematical And Life Sciences Graduate School Of Science Hiroshima University
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Mimura Masayasu
Department Of Applied Mathematics And Physics Faculty Of Engineering Kyoto Univerisity
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