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Ultra-broadband tunable miniaturized spectroscopy based on epsilon-near-zero effect enabled electro-optic modulation
Optics Express
|August 13, 2025
Summary
A novel miniaturized spectroscopy technique uses non-resonant electro-optic modulation for ultra-broadband sensing. This approach offers a low-cost, single-photodetector solution for infrared spectral analysis in portable devices.
Area of Science:
- Optics and Photonics
- Spectroscopy
- Materials Science
Background:
- Miniature spectrometers are crucial for portable sensing but face challenges with photodetector complexity and cost, especially in the infrared spectrum.
- Existing reconfigurable spectral response methods have limited wavelength tuning ranges, hindering broad applicability.
- Developing cost-effective, miniaturized spectrometers with wide spectral coverage is essential for point-of-care diagnostics and on-site inspection.
Purpose of the Study:
- To propose and simulate a novel concept for ultra-broadband miniaturized spectroscopy using non-resonant electro-optic modulation.
- To demonstrate a wide spectral tuning range and high spectral resolution for infrared applications.
- To present a low-cost alternative to conventional spectrometer designs.
Main Methods:
- Utilized a 45° groove micro-mirror with a silicon/dielectric/TCOs/metal stack for light modulation.
- Leveraged the epsilon-near-zero (ENZ) effect for spectral response tuning, relying on electron concentration rather than resonators.
- Simulated the device performance, predicting spectral tuning range and resolution.
Main Results:
- Predicted a remarkable spectral tuning range of 3000 nm.
- Achieved a predicted spectral resolution of 6 nm at 2.29 μm.
- Demonstrated strong ENZ mode confinement due to high refractive index contrast, enabling broad operation from near-infrared to mid-infrared.
Conclusions:
- The proposed non-resonant electro-optic modulation technique enables ultra-broadband miniaturized spectroscopy.
- This approach overcomes the limitations of resonator-based methods, offering a wider tuning range.
- The technology presents a promising, low-cost platform for portable optical sensing and on-site inspection applications.

