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Effects of electron scattering at metal-nonmetal interfaces on electron-phonon equilibration in gold films

机译:电子在金属-非金属界面上的散射对金膜中电子-声子平衡的影响

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摘要

Electron scattering at interfaces between metals aod dielectrics is a major concern in thermal boundary conductance studies. This aspect of energy transfer has been extensively studied and modeled on long time scales when the electrons and phonons are in equilibrium in the metal film. However, there are conflicting results concerning electron-interface scattering and energy transfer in the event of an electron-phonon nonequilibrium, specifically, how this mode of energy transfer affects the electron cooling during electron-phonon nonequilibration. Transient thermoreflectance (TTR) experiments utilizing ultrashort pulsed laser systems can resolve this electron-phonon nonequilibrium, and the thermophysical property relating rate of equilibration to electron-phonon scattering events G can be quantified. In this work, G in Au films of varying thicknesses are measured with the TTR technique. At large fluences (which result in high electron temperatures), the measured G is much larger than predicted from traditional models. This increase in G increases as the film thickness decreases and shows a substrate dependency, with larger values of G measured on more conductive substrates. The data suggest that in a highly nonequilibrium system, there could be some thermal energy lost to the underlying substrate, which can affect G.
机译:在金属和电介质之间的界面处的电子散射是热边界电导研究中的主要问题。当电子和声子在金属膜中处于平衡状态时,能量转移的这一方面已得到广泛研究,并在很长时间内进行了建模。然而,在电子-声子不平衡的情况下,关于电子界面的散射和能量转移存在矛盾的结果,特别是,这种能量转移方式如何影响电子-声子不平衡期间的电子冷却。利用超短脉冲激光系统的瞬态热反射(TTR)实验可以解决这种电子-声子不平衡现象,并且可以量化与电子声子散射事件G的平衡速率相关的热物理性质。在这项工作中,采用TTR技术测量了厚度不同的金膜中的G。在大通量(导致较高的电子温度)下,测得的G远远大于传统模型的预测值。 G的增加随着膜厚度的减小而增加,并显示出对基板的依赖性,在更多导电的基板上测得的G值较大。数据表明,在高度非平衡的系统中,可能会有一些热能流失到下面的基底上,从而影响G。

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  • 来源
    《Journal of Applied Physics》 |2009年第1期|0237101-0237108|共8页
  • 作者单位

    Department of Mechanical and Aerospace Engineering, University of Virginia, P.O. Box 400746, Charlottesville, Virginia 22904-4746, USA;

    Department of Mechanical and Aerospace Engineering, University of Virginia, P.O. Box 400746, Charlottesville, Virginia 22904-4746, USA;

    Department of Mechanical and Aerospace Engineering, University of Virginia, P.O. Box 400746, Charlottesville, Virginia 22904-4746, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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