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Fiber optic Raman sensor to monitor the concentration ratio of nitrogen and oxygen in a cryogenic mixture
Author(s) -
Vidhu S. Tiwari,
Rajamohan R. Kalluru,
Fang Y. Yueh,
Jagdish Singh,
William St. Cyr,
Sunil K. Khijwania
Publication year - 2007
Publication title -
applied optics
Language(s) - English
Resource type - Journals
ISSN - 0003-6935
DOI - 10.1364/ao.46.003345
Subject(s) - materials science , millisecond , optical fiber , fiber optic sensor , liquid nitrogen , raman spectroscopy , optics , raman scattering , liquid oxygen , optoelectronics , oxygen , chemistry , physics , organic chemistry , astronomy
A spontaneous Raman scattering optical fiber sensor was developed for a specific need of the National Aeronautics and Space Administration (NASA) for long-term detection and monitoring of the purity of liquid oxygen (LO(2)) in the oxidizer feed line during ground testing of rocket engines. The Raman peak intensity ratios for liquid nitrogen (LN(2)) and LO(2) with varied weight ratios (LN(2)/LO(2)) were analyzed for their applicability to impurity sensing. The study of the sensor performance with different excitation light sources has helped to design a miniaturized, cost-effective system for this application. The optimal system response time of this miniaturized sensor for LN(2)/LO(2) measurement was found to be in the range of a few seconds. It will need to be further reduced to the millisecond range for real-time, quantitative monitoring of the quality of cryogenic fluids in a harsh environment.

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