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NASA NTRS · 20120006030

Mathematical Simulation for Integrated Linear Fresnel Spectrometer Chip

Abstract

A miniaturized solid-state optical spectrometer chip was designed with a linear gradient-gap Fresnel grating which was mounted perpendicularly to a sensor array surface and simulated for its performance and functionality. Unlike common spectrometers which are based on Fraunhoffer diffraction with a regular periodic line grating, the new linear gradient grating Fresnel spectrometer chip can be miniaturized to a much smaller form-factor into the Fresnel regime exceeding the limit of conventional spectrometers. This mathematical calculation shows that building a tiny motionless multi-pixel microspectrometer chip which is smaller than 1 cubic millimter of optical path volume is possible. The new Fresnel spectrometer chip is proportional to the energy scale (hc/lambda), while the conventional spectrometers are proportional to the wavelength scale (lambda). We report the theoretical optical working principle and new data collection algorithm of the new Fresnel spectrometer to build a compact integrated optical chip.

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BibTeXRIS

Park, Yeonjoon, Yoon, Hargoon, Lee, Uhn, King, Glen C., Choi, Sang H.. 2012-03-11. Mathematical Simulation for Integrated Linear Fresnel Spectrometer Chip. https://ntrs.nasa.gov/citations/20120006030

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