论文标题

通过双曲线波导的补偿扩展近场的热场

Extending the thermal near field through compensation in hyperbolic waveguides

论文作者

McSherry, Sean, Lenert, Andrej

论文摘要

在不使用纳米级真空间隙的情况下利用近场功率密度来利用近场功率密度的一种有希望的方法是通过超质超材料(HMM)波导。当放置在冷热库之间时,理想的HMM可以在几微米上传输表面波,从而延伸了近场增强。但是,当考虑到波导内的现实吸收水平导致的传输损失时,先前的研究表明,在较大的分离下,增强功能会大大减少。在我们的研究中,我们研究了内部来源在现实的非等温HMM中的作用。我们证明,在某些情况下,HMM的发射占总热传递到接收器的90%以上,并且这些额外的来源可以很大程度上补偿与从发射极减少到接收器的传输相关的光损失。最后,我们研究了逼真的三体系统中的光谱传输,该系统在边界(发射极和接收器)和波导(HMM)之间具有不匹配的光学特性。我们的模型表明,即使主要的辐射贡献来自波导,近场热传输仍然在光谱上选择性选择性。这项工作可以使非等温发射器波基接收器系统的设计能够在更广泛的分离上传递近场功率水平。

A promising method to leverage near-field power densities without the use of nanoscale vacuum gaps is through hyperbolic metamaterial (HMM) waveguides. When placed between a hot and cold reservoir, an ideal HMM can transmit surface waves across several microns, enabling an extension of near-field enhancements. However, when accounting for transmission loss due to realistic levels of absorption within the waveguide, previous studies have shown that the enhancements are significantly curtailed at wide separations. In our study, we investigate the role of internal sources within realistic non-isothermal HMMs. We demonstrate that, in some cases, the emission from the HMM accounts for over 90% of the total heat transfer to the receiver, and that these additional sources can largely compensate for optical losses associated with decreased transmission from the emitter to the receiver. Lastly, we investigate the spectral transport in a realistic 3-body system which has mismatching optical properties between the boundaries (emitter and receiver) and the waveguide (HMM). Our model shows that the near-field thermal transport remains spectrally selective to the boundaries, even as major radiative contributions come from the waveguide. This work may enable the design of non-isothermal emitter-waveguide-receiver systems that transmit near-field power levels over wider separations.

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