Molecular dynamics simulation of thermal conductivities of superlattice nanowires
- 期刊名字:中国科学E辑
- 文件大小:
- 论文作者:杨决宽,陈云飞,颜景平
- 作者单位:Department of Mechanical Engineering,MEMS Laboratory of Education Ministry of China
- 更新时间:2022-11-03
- 下载次数:次
Nonequilibrium molecular dynamics simulations were carried out to investigate heat transfer in superlattice nanowires. Results show that for fixed period length superlattice nanowires, the ratio of the total interfacial thermal resistance to the total thermal resistance and the effective thermal conductivities are invariant with the changes in interface numbers. Increasing the period length leads to an increase in the average interfacial thermal resistance, which indicates that the interfacial thermal resistance depends not only on the materials that constitute the alternating segments of superlattice nanowires, but also on the lattice strain throughout the segments. The modification of the lattice structure due to the lattice mismatch should be taken into account in the acoustic mismatch model. Simulation results also demonstrated the size confinement effect on the thermal conductivities for low dimensional structures, i.e. the thermal conductivities and the interfacial thermal resistance increase as the nanowire cross-sectional area increases.
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