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Non-negligible Contributions to Thermal Conductivity From Localized Modes in Amorphous Silicon Dioxide

机译:非晶态二氧化硅在局部模式下对导热系数的贡献不可忽略

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摘要

Thermal conductivity is important for almost all applications involving heat transfer. The theory and modeling of crystalline materials is in some sense a solved problem, where one can now calculate their thermal conductivity from first principles using expressions based on the phonon gas model (PGM). However, modeling of amorphous materials still has many open questions, because the PGM itself becomes questionable when one cannot rigorously define the phonon velocities. In this report, we used our recently developed Green-Kubo modal analysis (GKMA) method to study amorphous silicon dioxide (a-SiO2). The predicted thermal conductivities exhibit excellent agreement with experiments and anharmonic effects are included in the thermal conductivity calculation for all the modes in a-SiO2 for the first time. Previously, localized modes (locons) have been thought to have a negligible contribution to thermal conductivity, due to their highly localized nature. However, in a-SiO2 our results indicate that locons contribute more than 10% to the total thermal conductivity from 400 K to 800 K and they are largely responsible for the increase in thermal conductivity of a-SiO2 above room temperature. This is an effect that cannot be explained by previous methods and therefore offers new insight into the nature of phonon transport in amorphous/glassy materials.
机译:导热系数对于涉及传热的几乎所有应用都很重要。从某种意义上讲,晶体材料的理论和建模是一个已解决的问题,现在人们可以使用基于声子气体模型(PGM)的表达式从第一原理计算其导热系数。但是,无定形材料的建模仍然存在许多悬而未决的问题,因为当人们无法严格定义声子速度时,PGM本身就会成为问题。在本报告中,我们使用了我们最近开发的Green-Kubo模态分析(GKMA)方法来研究非晶态二氧化硅(a-SiO2)。预测的热导率与实验具有极好的一致性,并且在a-SiO2中所有模式的热导率计算中都首次包含了非谐效应。以前,由于局部模式(locons)具有高度局部性,因此对导热系数的贡献可忽略不计。但是,在a-SiO2中,我们的结果表明,locon对从400 K到800 K的总热导率的贡献超过10%,并且它们是a-SiO2在室温以上的热导率增加的主要原因。这是以前的方法无法解释的效果,因此可以为非晶/玻璃态材料中声子传输的性质提供新的见解。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Wei Lv; Asegun Henry;

  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 35720
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
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