Laser & Optoelectronics Progress, Volume. 60, Issue 17, 1730002(2023)

Study on Electro-Optic Dual-Comb Spectroscopy for Gas Concentration Measurement

Jie Wang1, Rui Liu1, Wenlong Liao1, Xinyi Ren2、*, Hui Ma2, Ming Yan2, Heping Zeng2, Qinqing Huang3, and Lin Cheng3
Author Affiliations
  • 1Power Science Research Institute of State Grid, Sichuan Electric Power Company, Chengdu 610041, Sichuan , China
  • 2Chongqing Institute of East China Normal University, Chongqing 401121, China
  • 3Wuhan NARI Co., Ltd., State Grid Electric Power Research Institute, Wuhan 430074, Hubei , China
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    References(29)

    [1] Giaccari P, Deschênes J D, Saucier P et al. Active Fourier-transform spectroscopy combining the direct RF beating of two fiber-based mode-locked lasers with a novel referencing method[J]. Optics Express, 16, 4347-4365(2008).

    [2] Ideguchi T, Poisson A, Guelachvili G et al. Adaptive real-time dual-comb spectroscopy[J]. Nature Communications, 5, 3375(2014).

    [3] Okubo S, Iwakuni K, Inaba H et al. Ultra-broadband dual-comb spectroscopy across 1.0‒1.9 µm[J]. Applied Physics Express, 8, 082402(2015).

    [4] Schroeder P J, Wright R J, Coburn S et al. Dual frequency comb laser absorption spectroscopy in a 16 MW gas turbine exhaust[J]. Proceedings of the Combustion Institute, 36, 4565-4573(2017).

    [5] Lu Q, Shi L, Mao Q H. Research advances in dual-comb spectroscopy[J]. Chinese Journal of Lasers, 45, 0400001(2018).

    [6] Yang C X, Zhao K J, Cao B et al. Recent progress of single-cavity dual-comb mode-locked fiber lasers and their applications[J]. Chinese Journal of Lasers, 48, 1501001(2021).

    [7] Ycas G, Giorgetta F R, Cossel K C et al. Mid-infrared dual-comb spectroscopy of volatile organic compounds across long open-air paths[J]. Optica, 6, 165-168(2019).

    [8] Bustamante S, Manana M, Arroyo A et al. Dissolved gas analysis equipment for online monitoring of transformer oil: a review[J]. Sensors, 19, 4057(2019).

    [9] de Faria H, Jr, Costa J G S, Olivas J L M. A review of monitoring methods for predictive maintenance of electric power transformers based on dissolved gas analysis[J]. Renewable and Sustainable Energy Reviews, 46, 201-209(2015).

    [10] Li M X. Research and application of transformer oil dissolved gas monitoring system[D], 1-5(2017).

    [11] Fan J M, Wang F, Sun Q Q et al. SOFC detector for portable gas chromatography: high-sensitivity detection of dissolved gases in transformer oil[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 24, 2854-2863(2017).

    [12] Fan J M, Liu Z, Meng A B et al. Characteristics of tin oxide chromatographic detector for dissolved gases analysis of transformer oil[J]. IEEE Access, 7, 94012-94020(2019).

    [13] Zhao J J, Yuan T Z, Tang H et al. Research on field accuracy calibration method of transformer chromatography on-line monitoring device[J]. Northeast Electric Power Technology, 40, 43-46(2019).

    [14] Adler F, Masłowski P, Foltynowicz A et al. Mid-infrared Fourier transform spectroscopy with a broadband frequency comb[J]. Optics Express, 18, 21861-21872(2010).

    [15] Baumann E, Giorgetta F R, Swann W C et al. Spectroscopy of the methane ν3 band with an accurate midinfrared coherent dual-comb spectrometer[J]. Physical Review A, 84, 062513(2011).

    [16] Coddington I, Swann W C, Newbury N R. Coherent dual-comb spectroscopy at high signal-to-noise ratio[J]. Physical Review A, 82, 043817(2010).

    [17] Lu S Y, Hao Q, Liu T T et al. All polarization maintaining fiber-based optical comb system with nonlinear loop mirror mode-locking[J]. Chinese Journal of Lasers, 48, 2102002(2021).

    [18] Parriaux A, Hammani K, Millot G. Electro-optic frequency combs[J]. Advances in Optics and Photonics, 12, 223-287(2020).

    [19] Long D A, Fleisher A J, Douglass K O et al. Multiheterodyne spectroscopy with optical frequency combs generated from a continuous-wave laser[J]. Optics Letters, 39, 2688-2690(2014).

    [20] Millot G, Pitois S, Yan M et al. Frequency-agile dual-comb spectroscopy[J]. Nature Photonics, 10, 27-30(2016).

    [21] Yan M, Luo P L, Iwakuni K et al. Mid-infrared dual-comb spectroscopy with electro-optic modulators[J]. Light: Science & Applications, 6, e17076(2017).

    [22] Wang S, Fan X Y, Xu B X et al. Fast MHz spectral-resolution dual-comb spectroscopy with electro-optic modulators[J]. Optics Letters, 44, 65-68(2019).

    [23] Guay P, Genest J, Fleisher A J. Precision spectroscopy of H13CN using a free-running, all-fiber dual electro-optic frequency comb system[J]. Optics Letters, 43, 1407-1410(2018).

    [24] Martín-Mateos P, Jerez B, Largo-Izquierdo P et al. Frequency accurate coherent electro-optic dual-comb spectroscopy in real-time[J]. Optics Express, 26, 9700-9713(2018).

    [25] Liu P F, Ren L H, Wen H et al. Progress in integrated electro-optic frequency combs(Invited)[J]. Infrared and Laser Engineering, 51, 20220381(2022).

    [26] Zhang X, Yin K, Zhang J H et al. High bandwidth 25 GHz dual optical frequency comb source[J]. Chinese Journal of Lasers, 48, 1116002(2021).

    [27] Li D T, Ren X Y, Yan M et al. Rapid and precise partial pressure measurement of multiple gas species with mid-infrared electro-optic dual-comb spectroscopy[J]. Optik, 242, 167341(2021).

    [28] Zolot A M, Giorgetta F R, Baumann E et al. Direct-comb molecular spectroscopy with accurate, resolved comb teeth over 43 THz[J]. Optics Letters, 37, 638-640(2012).

    [29] Chen Z J, Yan M, Hänsch T W et al. A phase-stable dual-comb interferometer[J]. Nature Communications, 9, 3035(2018).

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    Jie Wang, Rui Liu, Wenlong Liao, Xinyi Ren, Hui Ma, Ming Yan, Heping Zeng, Qinqing Huang, Lin Cheng. Study on Electro-Optic Dual-Comb Spectroscopy for Gas Concentration Measurement[J]. Laser & Optoelectronics Progress, 2023, 60(17): 1730002

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    Paper Information

    Category: Spectroscopy

    Received: Jul. 17, 2022

    Accepted: Sep. 5, 2022

    Published Online: Sep. 13, 2023

    The Author Email: Xinyi Ren (18717827913@163.com)

    DOI:10.3788/LOP222318

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