Dynamical Regulation of Transition States Resulting from Heat Flow(Oscillation, Chaos and Network Dynamics in Nonlinear Science)
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概要
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Under a non-equilibrium steady state, an oriented motion of a particle on a onedimensional flexible rail composed of a line with multiple binding sites of the particle is studied. The dynamical coupling among the particle and the sites allows the system's configuration to fluctuate rather flexibly. Our study focuses on the transition states for the change of the binding site. Due to the flexibility of the system, the transition states at non-equilibrium are found to deviate from those at equilibrium. The excess energy absorbed by the system from the heat baths to attain the transition states is also evaluated. These results consistently account the direction of the oriented motion.
- 理論物理学刊行会の論文
- 2006-04-20
著者
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KOMATSU Teruhisa
Department of Applied Physics, The University of Tokyo
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NAKAGAWA Naoko
College of Science, Ibaraki University
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Nakagawa Naoko
Department Of Information And Media Sciences The University Of Kitakyusyu
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Nakagawa Naoko
Ibaraki Univ. Mito Jpn
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Nakagawa Naoko
Department Mathematical Sciences Ibaraki University
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Komatsu Teruhisa
Department Of Applied Physics The University Of Tokyo
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KOMATSU Teruhisa
Department of Physics, Gakushuin University
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