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Wavelength Tunable Surface Plasmon Resonance-Enhanced Optical Transmission Through a Chirped Diffraction Grating

机译:通过a衍射光栅的波长可调表面等离子体共振增强光传输。

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We report the construction and testing of a chirped diffraction grating, which serves as a substrate for surface plasmon-enhanced optical transmission. This grating possesses a spatial variation in both pitch and amplitude along its surface. It was created by plasma oxidation of a curved poly(dimethoxysilane) sheet, which resulted in nonuniform buckling along the polymer surface. A gold-coated replica of this surface elicited an optical response that consisted of a series of narrow, enhanced transmission peaks spread over the visible spectrum. The location and magnitude of these transmission peaks varied along the surface of the grating and coincided with conditions where surface plasmons were excited in the gold film via coupling to one or more of the grating's diffracted orders. A series of measurements were carried out using optical diffraction, atomic force microscopy, and normal incidence optical transmission to compare the grating topology to the corresponding optical response. In addition, the impact of a thin dielectric coating on the transmission response was determined by depositing a thin silicon oxide film over the grating surface. After coating, wavelength shifts were observed in the transmission peaks, with the magnitude of the shifts being a function of the film thickness, the local grating structure, and the diffracted order associated with each peak. These results illustrate the ability of this surface to serve as an information-rich optical sensor whose properties can be tuned by control of the local grating topology.
机译:我们报告report的衍射光栅的构建和测试,该光栅用作表面等离激元增强光传输的衬底。该光栅沿其表面在间距和振幅上都具有空间变化。它是通过对弯曲的聚二甲氧基硅烷片进行等离子体氧化而产生的,该氧化导致沿聚合物表面的不均匀屈曲。表面镀金的复制品引起光学响应,该响应由一系列窄的,增强的透射峰组成,这些峰遍布可见光谱。这些透射峰的位置和幅度沿着光栅的表面变化,并且与通过耦合到光栅的一个或多个衍射阶次而在金膜中激发表面等离子体激元的条件相一致。使用光学衍射,原子力显微镜和法向入射光传输进行了一系列测量,以比较光栅拓扑与相应的光学响应。另外,薄的介电涂层对传输响应的影响是通过在光栅表面上沉积一层氧化硅薄膜来确定的。涂覆后,在透射峰中观察到波长偏移,该偏移的大小是膜厚度,局部光栅结构和与每个峰相关的衍射级的函数。这些结果说明了该表面可用作信息丰富的光学传感器的能力,该传感器的特性可以通过控制局部光栅拓扑来进行调整。

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