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Heat Transfer Across Metal-Dielectric Interfaces During Ultrafast-Laser Heating

机译:超快激光加热过程中跨金属介电界面的传热

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Heat transfer across metal-dielectric interfaces involves transport of electrons and pho-nons accomplished either by coupling between phonons in metal and dielectric or by coupling between electrons in metal and phonons in dielectric. In this work, we investigate heat transfer across metal-dielectric interfaces during ultrafast-laser heating of thin metal films coated on dielectric substrates. By employing ultrafast-laser heating that creates strong thermal nonequilibrium between electrons and phonons in metal, it is possible to isolate the effect of the direct electron-phonon coupling across the interface and thus facilitate its study. Transient thermo-reflectance measurements using femtosecond laser pulses are performed on Au-Si samples while the simulation results based on a two-temperature model are compared with the measured data. A contact resistance between electrons in Au and phonons in Si represents the coupling strength of the direct electron-phonon interactions at the interface. Our results reveal that this contact resistance can be sufficiently small to indicate strong direct coupling between electrons in metal and phonons in dielectric.
机译:跨金属-电介质界面的传热涉及电子和光子的传输,该传输可以通过金属和电介质中的声子之间的耦合或通过金属和电介质中的声子之间的耦合来实现。在这项工作中,我们研究了超快激光加热涂覆在介电基板上的金属薄膜过程中跨金属-介电界面的热传递。通过采用超快激光加热,在金属中的电子和声子之间产生强烈的热不平衡,可以隔离界面上直接的电子-声子耦合的影响,从而促进其研究。使用飞秒激光脉冲对Au-Si样品进行瞬态热反射测量,同时将基于双温度模型的仿真结果与测量数据进行比较。 Au中的电子与Si中的声子之间的接触电阻表示界面处直接电子-声子相互作用的耦合强度。我们的结果表明,该接触电阻可以足够小,以指示金属中的电子与介电质中的声子之间的强直接耦合。

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