Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters

A simultaneous in-situ detection technique to obtain multi-optical parameters was proposed. The same 403.56 nm, low power, blue diode laser was used to conduct the cavity ring-down spectroscopy and photoacoustic spectroscopy, which were coupled. Four photoacoustic spectra were applied to the simulta...

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Main Authors: Hua-Wei Jin, Ren-Zhi Hu, Pin-Hua Xie, Chong-Chong Huang, Feng-Yang Wang, Chuan Lin
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8968316/
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spelling doaj-4a687647ec0d4d4f9d2489c0e58b0b292021-03-29T18:00:13ZengIEEEIEEE Photonics Journal1943-06552020-01-0112211110.1109/JPHOT.2020.29692268968316Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical ParametersHua-Wei Jin0https://orcid.org/0000-0003-0836-5525Ren-Zhi Hu1Pin-Hua Xie2Chong-Chong Huang3Feng-Yang Wang4Chuan Lin5Key Laboratory of Environmental Optics & Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Environmental Optics & Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Environmental Optics & Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Environmental Optics & Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Environmental Optics & Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Environmental Optics & Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei, ChinaA simultaneous in-situ detection technique to obtain multi-optical parameters was proposed. The same 403.56 nm, low power, blue diode laser was used to conduct the cavity ring-down spectroscopy and photoacoustic spectroscopy, which were coupled. Four photoacoustic spectra were applied to the simultaneous in-situ detection of the cavity ring-down spectrum, which were systematically compared and analyzed for the first time. And the main performance of the systems varied with the arrangement of the photoacoustic pool. The results reveal that the photoacoustic response was optimized by the high reflectivity mirror with the pool constant of 1450.64 (Pα·cm)/W and the signal sensitivity of 0.2562 μv/ppb. The intensity value of the photoacoustic pool inside the cavity ring down was superimposed to 48.45% of the initial intensity. The corresponding experimental results were consistent with the theoretical analysis and shown the coupled cavity could suitable for simultaneous in-situ measurement of high concentration. The coupled two detection techniques detected different optical parameters and thus provided a new method for the simultaneous in-situ detection of the multi-optical parameters of specific atmospheric components.https://ieeexplore.ieee.org/document/8968316/Photoacoustic technologycavity ring-down spectroscopyblue diode lasercoupled spectrumsimultaneous in-situ detection
collection DOAJ
language English
format Article
sources DOAJ
author Hua-Wei Jin
Ren-Zhi Hu
Pin-Hua Xie
Chong-Chong Huang
Feng-Yang Wang
Chuan Lin
spellingShingle Hua-Wei Jin
Ren-Zhi Hu
Pin-Hua Xie
Chong-Chong Huang
Feng-Yang Wang
Chuan Lin
Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters
IEEE Photonics Journal
Photoacoustic technology
cavity ring-down spectroscopy
blue diode laser
coupled spectrum
simultaneous in-situ detection
author_facet Hua-Wei Jin
Ren-Zhi Hu
Pin-Hua Xie
Chong-Chong Huang
Feng-Yang Wang
Chuan Lin
author_sort Hua-Wei Jin
title Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters
title_short Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters
title_full Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters
title_fullStr Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters
title_full_unstemmed Study on the Photoacoustic Technology to Simultaneous In-Situ Detection of the Cavity Ring-Down Spectrum for Multi-Optical Parameters
title_sort study on the photoacoustic technology to simultaneous in-situ detection of the cavity ring-down spectrum for multi-optical parameters
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2020-01-01
description A simultaneous in-situ detection technique to obtain multi-optical parameters was proposed. The same 403.56 nm, low power, blue diode laser was used to conduct the cavity ring-down spectroscopy and photoacoustic spectroscopy, which were coupled. Four photoacoustic spectra were applied to the simultaneous in-situ detection of the cavity ring-down spectrum, which were systematically compared and analyzed for the first time. And the main performance of the systems varied with the arrangement of the photoacoustic pool. The results reveal that the photoacoustic response was optimized by the high reflectivity mirror with the pool constant of 1450.64 (Pα·cm)/W and the signal sensitivity of 0.2562 μv/ppb. The intensity value of the photoacoustic pool inside the cavity ring down was superimposed to 48.45% of the initial intensity. The corresponding experimental results were consistent with the theoretical analysis and shown the coupled cavity could suitable for simultaneous in-situ measurement of high concentration. The coupled two detection techniques detected different optical parameters and thus provided a new method for the simultaneous in-situ detection of the multi-optical parameters of specific atmospheric components.
topic Photoacoustic technology
cavity ring-down spectroscopy
blue diode laser
coupled spectrum
simultaneous in-situ detection
url https://ieeexplore.ieee.org/document/8968316/
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