Related Experiment Video
Updated: Apr 17, 2026

Demonstration of Equal-Intensity Beam Generation by Dielectric Metasurfaces
Published on: June 7, 2019
Angle-multiplexed metasurface-grating for ultra-compact spectrometers
Abstract:
Miniaturizing optical spectrometers is constrained by the trade-off between spectral resolution and optical path length. We present an ultra-compact architecture leveraging angular dispersion of guided-mode resonances (GMR) for spectral encoding. Exploiting phase-matching at oblique incidence yields deterministic mapping, where incidence angle linearly tunes resonant wavelength. Our symmetric multi-layer architecture, a low-index metasurface-grating sandwiched between high-index guiding layers, achieves high-Q resonances (Q>103). Tailored for 550-1700 nm, we theoretically demonstrate 23.1 nm/° sensitivity with 0.75 nm resolution (≈12 cm-1), enabling Raman fingerprinting of bacterial isolates with strain-level differentiation. This compact (≈1 nm) solid-state solution advances consumer-grade chemical sensing, lab-on-chip diagnostics, and smartphone spectroscopy.

