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Reversal of thermal rectification in one-dimensional nonlinear composite system

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【作者】 詹斯琦黄维清黄桂芳

【Author】 Zhan Si-Qi;Huang Wei-Qing;Huang Gui-Fang;Department of Applied Physics, Key Laboratory for Micro-Nano Physics and Technology of Hunan Province,Hunan University;

【机构】 Department of Applied Physics Key Laboratory for Micro-Nano Physics and Technology of Hunan Province,Hunan University

【摘要】 Using nonequilibrium molecular dynamics simulations, a comprehensive study of the asymmetric heat conduction in the composite system consisting of the Frenkel–Kontorova(FK) model and Fermi–Pasta–Ulam(FPU) model is conducted.The calculated results show that in a larger system, the rectifying direction can be reversed only by adjusting the thermal bias. Moreover, the rectification reversal depends critically on the system size and the properties of the interface. The mechanisms of the two types of asymmetric heat conduction induced by nonlinearity are discussed. Considering the novel asymmetric heat conduction in the system, it may possess possible applications to manage the thermal rectification in situ directionally without re-building the structure.

【Abstract】 Using nonequilibrium molecular dynamics simulations, a comprehensive study of the asymmetric heat conduction in the composite system consisting of the Frenkel–Kontorova(FK) model and Fermi–Pasta–Ulam(FPU) model is conducted.The calculated results show that in a larger system, the rectifying direction can be reversed only by adjusting the thermal bias. Moreover, the rectification reversal depends critically on the system size and the properties of the interface. The mechanisms of the two types of asymmetric heat conduction induced by nonlinearity are discussed. Considering the novel asymmetric heat conduction in the system, it may possess possible applications to manage the thermal rectification in situ directionally without re-building the structure.

【基金】 supported by the Natural Science Foundation of Hunan Province,China(Grant No.12JJ3009);the Changsha Science and Technology Plan Projects,China;the Science and Technology Plan Projects of Hunan Province,China(Grant No.2013SK3148)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2014年11期
  • 【分类号】O313
  • 【下载频次】10
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