Chinese Optics Letters, Volume. 20, Issue 7, 073001(2022)

Optical analysis method for fast plasma characterization of high-speed miniaturized synthetic jet

Ye Yuan1, Yan Zhang2, Cheng Guo1, Xiaolu Kang2, Zhong Yan1, Xiaoping Huang1、*, and Qing Zhao1
Author Affiliations
  • 1School of Resources and Environment, University of Electronic Science and Technology of China, Chengdu 610054, China
  • 2Shanghai Institute of Space Propulsion, Shanghai Engineering Research Center of Space Engine, Shanghai 201112, China
  • show less
    References(23)

    [1] J. Shin, V. Narayanaswamy, L. L. Raja, N. T. Clemens. Characterization of a direct-current glow discharge plasma actuator in low-pressure supersonic flow. AIAA J., 45, 1596(2007).

    [2] V. Narayanaswamy, L. L. Raja, N. T. Clemens. Characterization of a high-frequency pulsed-plasma jet actuator for supersonic flow control. AIAA J., 48, 297(2010).

    [3] N. Zhao, J. Li, Q. Ma, L. Guo, Q. Zhang. Periphery excitation of laser-induced CN fluorescence in plasma using laser-induced breakdown spectroscopy for carbon detection. Chin. Opt. Lett., 18, 083001(2020).

    [4] A. Belinger, N. Naudé, J. P. Cambronne, D. Caruana. Plasma synthetic jet actuator: electrical and optical analysis of the discharge. J. Phys. D, 47, 345202(2014).

    [5] K. Inoue, S. Takahashi, N. Sakakibara, S. Toko, T. Ito, K. Terashima. Spatiotemporal optical emission spectroscopy to estimate electron density and temperature of plasmas in solution. J. Phys. D, 53, 235202(2020).

    [6] C. Pan. Diagnosis the physical characteristics of pulsed MIG welding arc by spectrum(2013).

    [7] L. Min, X. Hao-jun, W. Xiao-long, L. Hua, S. Chen. Experimental study of generation and spectroscopic diagnosis of inductively coupled plasma in closed cavity. J. Air Force Eng. Univ., 16, 10(2015).

    [8] L. Lei, X.-D. Chen, C.-X. Yuan, Z.-X. Zhou. Emission spectrum diagnose to Ar plasma jet. Chin. J. Lumin., 40, 1049(2019).

    [9] C. J. Chen. Optical emission spectroscopic diagnosis on atmospheric-pressure pulse-modulated surface wave plasma and its characteristics(2019).

    [10] M. Zhao, D. Zhang, L. Zheng, O. Condliffe, Y. Kang. Rapid quantitative detection of mineral oil contamination in vegetable oil by near-infrared spectroscopy. Chin. Opt. Lett., 18, 043001(2020).

    [11] L. X. Liu, H. T. Huan, M. Andreas, X. P. Shao. Multiple dissolved gas analysis in transformer oil based on Fourier transform infrared photoacoustic spectroscopy. Spectrosc. Spectr. Anal., 40, 684(2020).

    [12] A. Deng, Z. Zeng, J. Deng. VIPA-based two-component detection for a coherent population trapping experiment. Chin. Opt. Lett., 19, 083001(2021).

    [13] J. Jo, J. Siddiqui, Y. Zhu, L. Ni, S.-R. Kothapalli, S. A. Tomlins, J. T. Wei, E. T. Keller, A. M. Udager, X. Wang, G. Xu. Photoacoustic spectral analysis at ultraviolet wavelengths for characterizing the Gleason grades of prostate cancer. Opt. Lett., 45, 6042(2020).

    [14] Y. W. Chu, F. Chen, Y. Tang, T. Chen, Y. X. Yu, H. L. Jin, L. B. Guo, Y. F. Lu, X. Y. Zeng. Diagnosis of nasopharyngeal carcinoma from serum samples using hyperspectral imaging combined with a chemometric method. Opt. Express, 26, 28661(2018).

    [15] K. Chen, Y. Qin, F. Zheng, M. Sun, D. Shi. Diagnosis of colorectal cancer using Raman spectroscopy of laser-trapped single living epithelial cells. Opt. Lett., 31, 2015(2006).

    [16] C. Zhu, T. M. Breslin, J. Harter, N. Ramanujam. Model based and empirical spectral analysis for the diagnosis of breast cancer. Opt. Express, 16, 14961(2008).

    [17] G. Chen, J. Zhu, X. Li. Influence of a dielectric decoupling layer on the local electric field and molecular spectroscopy in plasmonic nanocavities: a numerical study. Chin. Opt. Lett., 19, 123001(2021).

    [18] Y. Z. Zhao, Y. L. Su, X. Y. Hou, M. H. Hong. Directional sliding of water: biomimetic snake scale surfaces. Opto-Electronic Adv., 4, 210008(2021).

    [19] J. Li, J. Hu, J. Ma, X. Wen, D. Li. Identifying self-trapped excitons in 2D perovskites by Raman spectroscopy. Chin. Opt. Lett., 19, 103001(2021).

    [20] M. Jia, H. Liang, H. Song, P. C. Liu, Y. Wu. Characteristic of spark discharge plasma jet driven by nanosecond pulses. High Volt. Eng., 37, 1493(2011).

    [21] L. Wei, Z.-X. Wang, S. Li. Emission spectrum characteristics of nanosecond pulsed spark plasma. Adv. Electr. Electron. Eng., 35, 29(2016).

    [22] Z. Yan. Novel plasma synthetic jet and its application in shock wave control(2018).

    [23] A. Belinger. Plasma synthetic jet actuator: electrical and optical analysis of the discharge. J. Phys. D, 47, 345202(2014).

    Tools

    Get Citation

    Copy Citation Text

    Ye Yuan, Yan Zhang, Cheng Guo, Xiaolu Kang, Zhong Yan, Xiaoping Huang, Qing Zhao. Optical analysis method for fast plasma characterization of high-speed miniaturized synthetic jet[J]. Chinese Optics Letters, 2022, 20(7): 073001

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Spectroscopy

    Received: Feb. 25, 2022

    Accepted: Apr. 12, 2022

    Published Online: May. 6, 2022

    The Author Email: Xiaoping Huang (xphuang@uestc.edu.cn)

    DOI:10.3788/COL202220.073001

    Topics