Affiliation:
1. Australian National University
2. Korea Atomic Energy Research Institute (KAERI)
Abstract
We demonstrate the quantitative pressure measurement of gas molecules in the mid-infrared using chip-based supercontinuum and cepstrum analysis without additional measurements for baseline normalization. A supercontinuum generated in an on-chip waveguide made of chalcogenide glass having high nonlinearity passes through CO gas and provides a transmission spectrum. The gas absorption information is deconvoluted from the original supercontinuum spectral information containing temporal fluctuation by cepstrum analysis and extracted simply by applying a bandpass filter in the temporal domain. The gas pressure estimated from the extracted absorption information is consistent with the value measured by a pressure gauge within a difference of 1.25%, despite spectral fluctuations in the supercontinuum baseline comparable to the spectral depth of the gas absorption lines.
Funder
Samsung
National Research Foundation of Korea
Korea Atomic Energy Research Institute
Y.H.L. and H.L. acknowledge the support by KAIST Cross-Generation Collaborative Lab project
Subject
Atomic and Molecular Physics, and Optics
Cited by
2 articles.
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