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Contributions of mass and bond energy difference and interface defects on thermal boundary conductance

机译:质量和键能差以及界面缺陷对热边界电导的贡献

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摘要

The impact of mass and bond energy difference and interface defects on thermal boundary conductance (TBC) is investigated using non-equilibrium molecular dynamics (NEMD) with the Lennard-Jones (L-J) interatomic potential. Results show that the maximum TBC is achieved when the mass and bond energy of two dissimilar materials are matched, although the effective thermal conductivity is not necessarily a maximum due to the contributions of the thermal conductivity of the constituent materials. Mass and bond energy differences result in a mismatch between phonon dispersions, limiting high frequency phonon transport at the interface. This frequency mismatch is defined by a frequency ratio, which is a ratio of the characteristic frequencies of the two materials, presented in the discussion section, and is a reference of the level of phonon dispersion mismatch. Inelastic scattering may result at higher temperatures, especially when there exists a bond energy difference, resulting in strain in the lattice, which would allow phonons outside the allowable frequency range to contribute to transport. TBC decreases abruptly with small mass differences, but at which point larger differences in mass have no impact. In addition, interdiffusion across the interface further reduces the TBC between the frequency ratios of 0.79 and 1.26 while vacancies have negligible impact. å© 2015 Author(s).
机译:使用具有伦纳德·琼斯(L-J)原子间电势的非平衡分子动力学(NEMD),研究了质量和键能差以及界面缺陷对热边界电导(TBC)的影响。结果表明,当两种不同材料的质量和键能匹配时,可以达到最大TBC,尽管由于组成材料的热导率的影响,有效热导率不一定是最大值。质量和键能差会导致声子色散之间不匹配,从而限制了界面处的高频声子传输。该频率失配由频率比定义,该频率比是讨论部分中介绍的两种材料的特征频率之比,并且是声子色散失配程度的参考。非弹性散射可能会在较高的温度下产生,尤其是当存在键能差时,会导致晶格中的应变,这将使允许频率范围以外的声子有助于传输。 TBC在质量差异较小的情况下突然下降,但此时质量差异较大没有影响。此外,跨界面的相互扩散进一步降低了0.79和1.26频率比之间的TBC,而空位的影响可忽略不计。 å©2015作者。

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