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Bidirectional negative differential thermal resistance phenomenon and its physical mechanism in the Frenkel-Kontorova lattices

机译:Frenkel-Kontorova晶格中的双向负微分热阻现象及其物理机制

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Thermal conduction of the Frenkel-Kontorova (FK) lattices with interfacial coupling is investigated numerically. The results indicate that: (i) For appropriate lattice periods, as the system is symmetric, a bidirectional negative differential thermal resistance (NDTR) phenomenon will appear. If the system is asymmetric, the bidirectional NDTR is gradually converted into an unidirectional NDTR. (ii) The bidirectional NDTR phenomenon effect also depends on the period of the FK lattice as the other parameters remains unchanged. With the increment of the lattice period, the bidirectional NDTR will gradually disappear. (iii) From a stochastic dynamics point of view, thermal transport properties of the system are determined by the competition between the two types of thermal conduction: one comes from the collusion between atoms, the other is due to the elastic coupling between atoms. For the smaller lattice periods, the former type of thermal conduction occupies the dominating position and the NDTR effect will appear.
机译:数值研究了具有界面耦合的Frenkel-Kontorova(FK)晶格的热传导。结果表明:(i)对于适当的晶格周期,由于系统是对称的,因此将出现双向负差分热阻(NDTR)现象。如果系统不对称,则双向NDTR会逐渐转换为单向NDTR。 (ii)双向NDTR现象的影响还取决于FK晶格的周期,因为其他参数保持不变。随着晶格周期的增加,双向NDTR将逐渐消失。 (iii)从随机动力学的角度来看,系统的热传输性质取决于两种类型的热传导之间的竞争:一种来自原子之间的共谋,另一种则是由于原子之间的弹性耦合。对于较小的晶格周期,前一种类型的热传导占据主导地位,并且将出现NDTR效应。

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