Formation of a Large-Scale Structure in a Nonlinear Dissipative System : General Physics
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概要
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Dynamic evolution of a small-scale structure to a large-scale structure is studied by a nonlinear dissipative LC ladder circuit. The circuit is described by a Burgers equation in the lowest order. We confirmed that the observed propagation of a shock wave and the confluence of shock waves are well described by the theory. A single hump wave is used to model a small-scale structure. When two single-hump waves with different amplitudes are applied to the circuit, they evolve into a large-scale structure in the course of propagation. Such a formation of a large-scale structure is unique in a nonlinear dissipative system, while the nonlinear dispersive system is known to preserve the nature of small-scale structures even after their interaction as known for solitons.
- 社団法人日本物理学会の論文
- 2000-07-15
著者
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ISHIHARA Osamu
Department of Obstetrics and Gynecology, Saitama Medical School
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ISHIWATA Shingo
Department of Physics,Faculty of Engineering,Yokohama National University
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WATANABE Shinsuke
Department of Physics,Faculty of Engineering,Yokohama National University
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Watanabe Shinsuke
Department Of Energy Engineering Faculty Of Engineering Yokohama National University
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Ishihara Osamu
Department Of Physics Faculty Of Engineering Yokohama National University
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TAKABATAKE Norio
Department of Energy Engineering, Faculty of Engineering, Yokohama National University
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Ishihara Osamu
Department Of Ob/gyn Saitama Medical University
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Takabatake Norio
Department Of Energy Engineering Faculty Of Engineering Yokohama National University
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Ishiwata Shingo
Department Of Energy Engineering Faculty Of Engineering Yokohama National University
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