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Disparate quasiballistic heat conduction regimes from periodic heat sources on a substrate

机译:来自衬底上的周期性热源的不同的准气候热传导方式

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摘要

We report disparate quasiballistic heat conduction trends for periodic nanoscale line heaters deposited on a substrate, depending upon whether measurements are based on the peak temperature of the heaters or the temperature difference between the peak and the valley of two neighboring heaters. The degree of quasiballistic transport is characterized by the effective thermal conductivities of the substrate which are obtained by matching the diffusion solutions to the phonon Boltzmann transport equation results. We find that while the ballistic heat conduction effect based on the peak temperature diminishes as the two heaters become closer, it becomes stronger based on the peak-valley temperature difference. Our results also show that the collective behavior of closely spaced heaters can counteract the nonlocal effects caused by an isolated nanoscale hot spot. These results are relevant to thermal conductivity spectroscopy techniques under development and also have important implications for understanding nonlocal heat conduction in integrated circuits and carbon nanotube array thermal interface materials.
机译:我们报告沉积在基板上的周期性纳米线加热器的准准热传导趋势有所不同,这取决于测量是基于加热器的峰值温度还是基于两个相邻加热器的峰值和谷值之间的温差。通过将扩散解与声子玻尔兹曼输运方程式结果相匹配而获得的基板的有效热导率来表征准弹道输运的程度。我们发现,尽管随着两个加热器的靠近,基于峰值温度的弹道热传导效应逐渐减弱,但基于峰值谷温差,该效应变得更强。我们的结果还表明,紧密排列的加热器的集体行为可以抵消由孤立的纳米级热点引起的非局部效应。这些结果与正在开发的热导光谱技术有关,并且对于理解集成电路和碳纳米管阵列热界面材料中的非局部热传导也具有重要意义。

著录项

  • 作者

    Zeng Lingping; Chen Gang;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en_US
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