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Asymmetrically filled slits in a metal film that split a light beam into two depending on its wavelength

机译:金属膜中不对称填充的狭缝,根据波长将光束分成两束

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By applying a scattering-wave theory, the electromagnetic response of an arbitrary array of multiple slits perforated on a metallic film and filled with different slit dielectric materials can be studied in an analytical way. Here, the wavelength-dependent splitting of a light beam into two by asymmetrically filled slits in a metal film using intraslit and interslit dual-wave interferences is fully explored. We consider a triple-slit structure perforated on a gold film, where the middle slit is used for the surface-plasmon (SP) excitation by a narrow Gaussian beam while the two side slits are used for the detection of a transmitted SP wave propagated from the middle opaque slit either at a particular wavelength or at double that wavelength, respectively. For this proposed simple structure, we show that only one of the two side observation slits can be in a passing state for a particular wavelength, but the other blocked slit will change to a passing state at double that wavelength with a specific design for the slit depth, slit dielectric, and interslit distance in the deep subwavelength regime. In this sense, SP mediated light transmission becomes wavelength sensitive in our model, and a single light beam can be separated into two according to its wavelength in the transverse direction parallel to the array. This provides us with a unique way for direct optical reading in the near-field region using a nonspectroscopic approach.
机译:通过应用散射波理论,可以以分析方式研究在金属膜上穿孔并填充有不同缝隙电介质材料的任意多个缝隙阵列的电磁响应。在这里,充分探索了利用缝隙内和缝隙间双波干涉通过金属膜中不对称填充的缝隙将光束分成两段的问题。我们考虑在金膜上穿孔的三缝结构,其中中间缝用于通过窄高斯光束激发表面等离子体(SP),而两侧缝用于检测从中传播的透射SP波。中间的不透明狭缝分别处于特定波长或两倍波长。对于这种建议的简单结构,我们表明,对于特定的波长,两个侧面观察狭缝中只有一个可以处于通过状态,而对于其他狭缝,在另一个狭缝中,狭缝将变为该波长的两倍的通过状态深亚波长范围内的深度,缝隙电介质和缝隙距离。从这个意义上说,在我们的模型中,SP介导的光传输变得对波长敏感,并且可以根据平行于阵列的横向方向上的波长将单个光束分为两束。这为我们提供了一种使用非光谱方法在近场区域直接光学读取的独特方法。

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