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Anomalous Heat Transport in Nanolaminate Metal/Oxide Multilayer Coatings: Plasmon and Phonon Excitations

机译:纳米胺酸盐/氧化物多层涂层中的异常热输送:等离子体和声子激发

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In this work, the anomalous reduction in the thermal conduction observed for nanolaminate metal-dielectric multilayers has been extended to the case of oxides. For this purpose, Ag/Al2O3 coatings were produced with different layer thicknesses (from 1 to 5 nm for Ag and 8 to 40 nm for Al2O3) and numbers of stacks. It was found that the thermal conduction is significantly lower in such metal–oxide nanolaminates compared to the bulk oxide. Such anomalous behaviour is explained by the influence of plasmon and phonon propagation confinement in nanolayers and at the interfaces. To this end, the characteristics of the different types of acoustic and optical phonon waves propagating in the multilayer coating have been studied. In particular, the electronic structures of the different layers and their influences on the plasmon resonance are investigated as a function of the multilayer design. The plasmon-polariton mechanism of energy transfer through oxide–metal and metal–oxide interfaces is discussed.
机译:在这项工作中,对纳米胺基金属 - 介电多层观察到的热传导的异常降低已经延伸到氧化物的情况。为此目的,用不同的层厚度(对于Ag和8至40nm的1至5nm,对于Al 2 O 3)和叠层数而产生Ag / Al2O3涂层。发现与氧化物相比,在这种金属氧化物纳米胺中的热传导显着降低。通过在纳米组和界面处的等离子体和声子传播限制的影响解释了这种异常行为。为此,已经研究了在多层涂层中传播的不同类型的声学和光学声波波的特性。特别地,作为多层设计的函数,研究了不同层的电子结构及其对等离子体共振的影响。讨论了通过氧化物 - 金属和金属氧化物界面的能量转移的等离子体 - 极性机构。

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