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Conformal surface plasmons propagating on ultrathin and flexible films

机译:在超薄柔性薄膜上传播的共形表面等离子体激元

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摘要

Surface plasmon polaritons (SPPs) are localized surface electromagnetic waves that propagate along the interface between a metal and a dielectric. Owing to their inherent subwavelength confinement, SPPs have a strong potential to become building blocks of a type of photonic circuitry built up on 2D metal surfaces; however, SPPs are difficult to control on curved surfaces conformably and flexibly to produce advanced functional devices. Here we propose the concept of conformal surface plasmons (CSPs), surface plasmon waves that can propagate on ultrathin and flexible films to long distances in a wide broadband range from microwave to mid-infrared frequencies. We present the experimental realization of these CSPs in the microwave regime on paper-like dielectric films with a thickness 600-fold smaller than the operating wavelength. The flexible paper-like films can be bent, folded, and even twisted to mold the flow of CSPs.
机译:表面等离子体激元极化子(SPPs)是沿金属和电介质之间的界面传播的局部表面电磁波。由于其固有的亚波长限制,SPP具有强大的潜力,可以成为在2D金属表面上构建的一种光子电路的基础。然而,SPP难以在曲面上进行一致且灵活的控制以生产先进的功能设备。在这里,我们提出了共形表面等离激元(CSP)的概念,即表面等离激元波可以在超薄和柔性薄膜上传播,从微波到中红外频率都可以在很宽的宽带范围内长距离传播。我们介绍了这些CSP在微波状态下在纸状介电膜上的实验实现,其厚度小于工作波长600倍。柔性纸状薄膜可以弯曲,折叠甚至扭曲以塑造CSP的流动。

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