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May 1, 2026Optics Letters0 citations

Localized guided-mode resonance-enabled highly angle-insensitive optical filtering

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IMIqra MamoonQLQingquan LiuMHMd. Mozzammel Haque

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Abstract

Angle sensitivity to incident light remains a fundamental limitation in conventional Fabry–Pérot (F-P) and guided-mode resonance (GMR) filters due to the angular dependence of the transverse wave vector. In this work, we propose a compact planar notch filter based on localized guided-mode resonance (LGMR) by embedding a metallic grating within a tri-layer SiO 2 –Si–SiO 2 structure. The design achieves three-dimensional (3D) confinement of the transverse wave vector, effectively suppressing angular dispersion and stabilizing the resonance condition. Numerical simulations based on the finite-difference time-domain (FDTD) method demonstrate a flat stop band near 1.55 µm with a minimal wavelength shift of only 7.4 nm over a broad angular range of 0°–70°. Spectral tunability in the near-infrared (NIR) region is realized through controlled adjustment of the grating period. The proposed LGMR notch filter provides a robust and integrable solution for angle-insensitive spectral filtering in applications such as Raman spectroscopy and optical communication.

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Cite This Study

Mamoon et al. (2026) studied this question.

synapsesocial.com/papers/6a0f5839bec900637ced1065https://doi.org/10.1364/ol.598816
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