Abstract
The grating, lens, and linear sensor determine a spectrometer’s wavelength resolution and measurement range. While conventional methods have tried to improve the optical design to obtain a better resolution, they have a limitation caused by the physical property. To improve the resolution, we introduce a super-resolution method from the computer vision field. We propose tilting an area sensor to realize accurate subpixel shifting and recover a high-resolution spectrum using interpolated spectrally varying kernels. We experimentally validate that the proposed method achieved a high spectral resolution of 0.141nm in 400–800nm by just tilting the sensor in the spectrometer.
Cite
CITATION STYLE
Kitano, K., Funatomi, T., Yasukuni, R., Tanaka, K., Kubo, H., Hosokawa, Y., & Mukaigawa, Y. (2021). Super-resolution for a dispersive spectrometer using a tilted area sensor and spectrally varying blur kernel interpolation. Optics Express, 29(2), 2809. https://doi.org/10.1364/oe.414479
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