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Tailoring near-field thermal radiation between metallo-dielectric multilayers using coupled surface plasmon polaritons

机译:使用耦合表面等离子体激元极化子调整金属介电多层体之间的近场热辐射

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摘要

Several experiments have shown a huge enhancement in thermal radiation over the blackbody limit when two objects are separated by nanoscale gaps. Although those measurements only demonstrated enhanced radiation between homogeneous materials, theoretical studies now focus on controlling the near-field radiation by tuning surface polaritons supported in nanomaterials. Here, we experimentally demonstrate near-field thermal radiation between metallo-dielectric multilayers at nanoscale gaps. Significant enhancement in heat transfer is achieved due to the coupling of surface plasmon polaritons (SPPs) supported at multiple metal-dielectric interfaces. This enables the metallo-dielectric multilayers at a 160-nm vacuum gap to have the same heat transfer rate as that between semi-infinite metal surfaces separated by only 75 nm. We also demonstrate that near-field thermal radiation can be readily tuned by modifying the resonance condition of coupled SPPs. This study will provide a new direction for exploiting surface-polariton-mediated near-field thermal radiation between planar structures.
机译:几个实验表明,当两个物体被纳米间隙分开时,热辐射会大大超过黑体极限。尽管这些测量仅显示了均质材料之间增强的辐射,但理论研究现在集中在通过调整纳米材料中支持的表面极化子来控制近场辐射。在这里,我们通过实验证明了在纳米间隙处的金属介电多层之间的近场热辐射。由于在多个金属-电介质界面处支撑的表面等离激元极化子(SPP)的耦合,实现了热传递的显着增强。这使得在160nm真空间隙处的金属介电多层具有与仅相隔75?nm的半无限金属表面之间相同的传热速率。我们还证明,通过修改耦合SPP的共振条件,可以很容易地调节近场热辐射。这项研究将为利用平面极化介导的平面结构之间的近场热辐射提供新的方向。

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