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The optical response of nanostructured surfaces and the composite diffracted evanescent wave model

机译:纳米结构表面的光学响应和复合衍射e逝波模型

摘要

Investigations of the optical response of subwavelength-structure arrays milled into thin metal films have revealed surprising phenomena, including reports of unexpectedly high transmission of light. Many studies have interpreted the optical coupling to the surface in terms of the resonant excitation of surface plasmon polaritons (SPPs), but other approaches involving composite diffraction of surface evanescent waves (CDEW) have also been proposed. Here we present a series of measurements on very simple one-dimensional subwavelength structures to test the key properties of the surface waves, and compare them to the CDEW and SPP models. We find that the optical response of the silver metal surface proceeds in two steps: a diffractive perturbation in the immediate vicinity (2–3 mu m) of the structure, followed by excitation of a persistent surface wave that propagates over tens of micrometres. The measured wavelength and phase of this persistent wave are significantly shifted from those expected for resonance excitation of a conventional SPP on a pure silver surface.
机译:对碾磨成金属薄膜的亚波长结构阵列的光学响应的​​研究揭示了令人惊讶的现象,包括有关光透射率出乎意料的报道。许多研究已经根据表面等离激元极化子(SPPs)的共振激发来解释与表面的光耦合,但是还提出了其他涉及表面van逝波(CDEW)复合衍射的方法。在这里,我们对非常简单的一维亚波长结构进行了一系列测量,以测试表面波的关键特性,并将其与CDEW和SPP模型进行比较。我们发现,银金属表面的光学响应分两步进行:在结构的紧邻区域(2-3微米)内发生衍射扰动,然后激发持续的表面波,该表面波传播数十微米。此持久波的测量波长和相位与纯银表面上常规SPP的共振激发所预期的波长和相位明显不同。

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