Microscopic Energy Flux in Particle Systems and Nonlinear Lattices(The 50th Anniversary of the Alder Transition -Recent Progress on Computational Statistical Physics-)
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概要
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We study the distribution of the microscopic energy flux j which is carried by a single particle. It is observed in Lennard-Jones particle system that the distribution of the norm of the energy flux P_n(j) has a broad peak in small j regime and a stretched-exponential decay for large j. The broad peak originates in the potential advection and energy transfer between particles. The stretched exponential tail is from the momentum energy advection. In nonlinear-lattice systems, all the flux components j_K, j_U, and j_F show stretched exponential decay.
- 理論物理学刊行会の論文
- 2009-04-24
著者
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YUKAWA Satoshi
Department of Earth and Space Science, Osaka University
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OGUSHI Fumiko
The Theoretical Biochemistry Laboratory, RIKEN Advanced Science Institute
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SHIMADA Takashi
Department of Applied Physics, The University of Tokyo
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ITO Nobuyasu
Department of Applied Physics, The University of Tokyo
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Shimada T
Department Of Applied Physics The University Of Tokyo
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OGUSHI Fumiko
Department of Physics and Electronics, Osaka Prefecture University
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Ito Nobuyasu
Department Of Applied Physics The University Of Tokyo
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Ito Nobuyasu
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Ogushi Fumiko
The Theoretical Biochemistry Laboratory Riken Advanced Science Institute
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Ogushi Fumiko
Department Of Applied Physics School Of Engineering The University Of Tokyo
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Yukawa S
Department Of Applied Physics University Of Tokyo
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Yukawa Satoshi
Department Of Applied Physics Graduate School Of Engineering The University Of Tokyo:department Of E
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Shimada Takashi
Department Of Applied Physics School Of Engineering The University Of Tokyo
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OGUSHI Fumiko
Department of Applied Physics, Graduate School of Engineering, The University of Tokyo
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Shimada Takashi
Department of Applied chemistry, Kinki University School of Science and Technology
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Ito Nobuyasu
Department of applied Physics
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