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Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell

By contrast with the widely reported traditional two mirror-based Herriott cell, a three mirror-based dense pattern gas cell was proposed, of which the modeling and design were proven to be effective through a comparison between the simulated spot pattern and effective path length and those of the e...

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Autores principales: Zhong, Guoqiang, Ma, Zhuo, Wang, Junbo, Zheng, Chuantao, Zhang, Yu, Wang, Yiding, Tittel, Frank K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7085622/
https://www.ncbi.nlm.nih.gov/pubmed/32110937
http://dx.doi.org/10.3390/s20051266
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author Zhong, Guoqiang
Ma, Zhuo
Wang, Junbo
Zheng, Chuantao
Zhang, Yu
Wang, Yiding
Tittel, Frank K.
author_facet Zhong, Guoqiang
Ma, Zhuo
Wang, Junbo
Zheng, Chuantao
Zhang, Yu
Wang, Yiding
Tittel, Frank K.
author_sort Zhong, Guoqiang
collection PubMed
description By contrast with the widely reported traditional two mirror-based Herriott cell, a three mirror-based dense pattern gas cell was proposed, of which the modeling and design were proven to be effective through a comparison between the simulated spot pattern and effective path length and those of the experimental results. A mechanical structure was designed to adjust the position/angle of the three mirrors for aligning the optical path. The experimentally measured reflection number was 60, resulting in an optical path length of ~11 m, which agrees well with the theoretical value of 10.95 m. Combined with a near-infrared laser with a center wavenumber located at an acetylene (C(2)H(2)) absorption line of 6521.2 cm(−1), a C(2)H(2) sensor system was established to verify the feasibility of the three mirror-based gas cell. Assisted by a data acquisition (DAQ) card, a LabVIEW platform was developed to generate the drive signal of the laser and acquire the second harmonic (2f) signal from the output of the detector. Through Allan variance analysis, the limit of detection (LoD) of the sensor system is 4.36 ppm at an average time of 0.5 s; as the average time exceeds 10 s, the LoD is <1 ppm. The proposed model and design of the three mirror-based gas cell can be used to realize similar gas cells with different absorption path lengths for gas detection based on infrared absorption spectroscopy.
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spelling pubmed-70856222020-04-21 Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell Zhong, Guoqiang Ma, Zhuo Wang, Junbo Zheng, Chuantao Zhang, Yu Wang, Yiding Tittel, Frank K. Sensors (Basel) Article By contrast with the widely reported traditional two mirror-based Herriott cell, a three mirror-based dense pattern gas cell was proposed, of which the modeling and design were proven to be effective through a comparison between the simulated spot pattern and effective path length and those of the experimental results. A mechanical structure was designed to adjust the position/angle of the three mirrors for aligning the optical path. The experimentally measured reflection number was 60, resulting in an optical path length of ~11 m, which agrees well with the theoretical value of 10.95 m. Combined with a near-infrared laser with a center wavenumber located at an acetylene (C(2)H(2)) absorption line of 6521.2 cm(−1), a C(2)H(2) sensor system was established to verify the feasibility of the three mirror-based gas cell. Assisted by a data acquisition (DAQ) card, a LabVIEW platform was developed to generate the drive signal of the laser and acquire the second harmonic (2f) signal from the output of the detector. Through Allan variance analysis, the limit of detection (LoD) of the sensor system is 4.36 ppm at an average time of 0.5 s; as the average time exceeds 10 s, the LoD is <1 ppm. The proposed model and design of the three mirror-based gas cell can be used to realize similar gas cells with different absorption path lengths for gas detection based on infrared absorption spectroscopy. MDPI 2020-02-26 /pmc/articles/PMC7085622/ /pubmed/32110937 http://dx.doi.org/10.3390/s20051266 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhong, Guoqiang
Ma, Zhuo
Wang, Junbo
Zheng, Chuantao
Zhang, Yu
Wang, Yiding
Tittel, Frank K.
Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell
title Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell
title_full Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell
title_fullStr Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell
title_full_unstemmed Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell
title_short Near-Infrared Tunable Laser Absorption Spectroscopic Acetylene Sensor System Using a Novel Three Mirror-Based, Dense Pattern Gas Cell
title_sort near-infrared tunable laser absorption spectroscopic acetylene sensor system using a novel three mirror-based, dense pattern gas cell
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7085622/
https://www.ncbi.nlm.nih.gov/pubmed/32110937
http://dx.doi.org/10.3390/s20051266
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