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Thermal conductance of metal-diamond interfaces at high pressure

机译:金属-金刚石界面在高压下的导热系数

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The thermal conductance of interfaces between metals and diamond, which has a comparatively high Debye temperature, is often greater than can be accounted for by two-phonon processes. The high pressures achievable in a diamond anvil cell (DAC) can significantly extend the metal phonon density of states to higher frequencies, and can also suppress extrinsic effects by greatly stiffening interface bonding. Here we report time-domain thermoreflectance measurements of metal-diamond interface thermal conductance up to 50 GPa in the DAC for Pb, Au0.95Pd0.05, Pt and Al films deposited on type 1A natural [100] and type 2A synthetic [110] diamond anvils. In all cases, the thermal conductances increase weakly or saturate to similar values at high pressure. Our results suggest that anharmonic conductance at metal-diamond interfaces is controlled by partial transmission processes, where a diamond phonon that inelastically scatters at the interface absorbs or emits a metal phonon.
机译:具有较高的德拜温度的金属与金刚石之间的界面的热导率通常大于双声子法所能解释的。金刚石砧盒(DAC)中可达到的高压可以将金属声子的态密度显着扩展到更高的频率,并且还可以通过大大加强界面结合来抑制外在效应。在这里,我们报告了沉积在1A型天然[100]和2A型合成[110]上的Pb,Au0.95Pd0.05,Pt和Al膜中DAC中高达50 GPa的金属-金刚石界面热导率的时域热反射率测量结果。钻石砧。在所有情况下,热导率在高压下均会微弱增加或饱和至相似值。我们的结果表明,金属-金刚石界面处的非谐电导受部分传输过程控制,在界面处非弹性散射的金刚石声子吸收或发射金属声子。

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