首页> 外文会议>Proceedings of the ASME microanoscale heat and mass transfer international conference 2012 : Microanofluidics and Lab-on-a-chip .... >TWO-TEMPERATURE NON-EQUILIBRIUM MOLECULAR DYNAMICS SIMULATION OF THERMAL TRANSPORT ACROSS METAL-NONMETAL INTERFACES
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TWO-TEMPERATURE NON-EQUILIBRIUM MOLECULAR DYNAMICS SIMULATION OF THERMAL TRANSPORT ACROSS METAL-NONMETAL INTERFACES

机译:跨金属-非金属界面的热传输的两温非平衡分子动力学模拟

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摘要

We have developed a two-temperature non-equilibrium molecular dynamics method for modeling interfacial thermal resistance across metal-nonmetal interfaces. Non-equilibrium molecular dynamics is used, where a temperature bias is imposed and the heat current is derived. On the metal side, the electron degree of freedom is added, and the electron-phonon coupling is treated with the two-temperature model. Temperature non-equilibrium between electrons and phonons in the metal side is quantitatively predicted, and a temperature drop across the interface is observed. The results agree with experimental data better than those obtained from conventional molecular dynamics simulations, which are only able to model phonons. Our method is capable of taking into account both electron and lattice degrees of freedom in a single molecular dynamics simulation, and is a generally useful tool for predicting metal-nonmetal interfaces.
机译:我们已经开发了一种用于模拟跨金属-非金属界面的界面热阻的两温非平衡分子动力学方法。使用非平衡分子动力学,其中施加温度偏差并导出热电流。在金属方面,增加了电子自由度,并用两温模型处理了电子-声子耦合。定量预测了金属侧电子和声子之间的温度不平衡,并且观察到界面上的温度下降。结果与实验数据吻合得比从常规分子动力学模拟获得的实验数据更好,后者只能模拟声子。我们的方法能够在单个分子动力学模拟中同时考虑电子和晶格的自由度,并且是预测金属-非金属界面的通用工具。

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