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Optimized thermal conductivity enhancement of polar nanotubes due to surface phonon-polaritons

机译:由于表面声子 - 极性子引起的极性纳米管的优化导热性增强

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Surface phonon-polaritons (SPP) are hybrid electromagnetic waves that are the result of the coupling between photons and phonons at the interface between two different media [1,2]. Taking into account that the surface effects predominate over the volumetric ones due to the high surface area/volume ratio in nanomaterials, the energy transport by SPP is expected to be particularly important in nano-sized polar media, whose bulk thermal conductivity is usually low and decreases as the size is scaled down. The potential applications of these surface waves to improve the thermal performance of nanoscale devices have been attracting significant research efforts in the last few years [3], however the contribution of the SPP to the thermal conductivity of these materials is not well understood to date, especially at nanoscale. The objective of this work is to quantify and optimize this contribution in nanotubes of circular cross section.
机译:表面声子 - 极性官(SPP)是混合电磁波,其是光子与两个不同介质之间接口处的光子和声子之间的耦合的结果[1,2]。考虑到由于纳米材料中的高表面积/体积比,所表面效应在体积上占主导地位,LPP的能量传输预计在纳米尺寸极性介质中尤为重要,其大量导热率通常是低的并且随着大小的缩小而减小。这些表面波的潜在应用在过去几年中,这些表面波提高了纳米级设备的热性能[3],然而,迄今为止,SPP对这些材料的导热率的贡献还不太了解,特别是纳米级。这项工作的目的是量化和优化圆形横截面纳米管中的这一贡献。

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