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首页> 外文期刊>Journal of Modern Optics >Guided-mode resonance excitation of waveguide grating at oblique incidence in the non-subwavelength region
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Guided-mode resonance excitation of waveguide grating at oblique incidence in the non-subwavelength region

机译:非亚波长区域斜入射时波导光栅的导模共振激发

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Guided-mode resonance (GMR) excitation of a waveguide grating at oblique incidence in the non-subwavelength region is investigated using the equivalent homogeneous thin-film model. The nondegenerate resonance locations are obtained and the spectral properties are demonstrated by using the rigorous coupled-wave analysis (RCWA) method based on the calculated parameters. It is shown that the dispersion equation of the slab waveguide can provide a reliable approximation in estimating the GMR locations even in the non-subwavelength region. The nondegenerate resonance in the subwavelength region at oblique incidence can be used to tailor an optical filter with good filtering features. Counter-propagating higher-order evanescent waves in the waveguide layer are possible at oblique incidence in the non-subwavelength region. The energy of the electric-field in the waveguide tends to be concentrated as the resonance wavelength decreases, and the lateral enhancement of the standing-wave electric-field (SWEF) can be available due to Bragg reflection in the vicinity of the resonance wavelength.
机译:使用等效的均质薄膜模型研究了波导光栅在非亚波长区域中斜入射时的导模共振(GMR)激发。通过使用严格的耦合波分析(RCWA)方法,基于计算的参数,获得了非简并共振位置,并证明了光谱特性。结果表明,即使在非亚波长范围内,平板波导的色散方程也可以提供可靠的近似值来估计GMR位置。倾斜入射时在亚波长区域内的非简并共振可用于定制具有良好滤波特性的光学滤波器。在非亚波长区域中,在倾斜入射时,波导层中的反向传播的高阶e逝波是可能的。随着共振波长的减小,波导中的电场的能量趋于集中,并且由于共振波长附近的布拉格反射,驻波电场(SWEF)的横向增强可以得到。

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