Acta Photonica Sinica, Volume. 53, Issue 5, 0553115(2024)
Microwave Resonant Cavity Discharge Breakdown Characterization and Emission Spectral Analysis
[1] CUI Wanzhao, LI Yun, ZHANG Hongtai et al[M]. Simulation method of multipactor and its application in satellite microwave components, 1-16(2022).
[2] CHEN Zeyu, WANG Rui, CUI Wanzhao. Source analysis of multipactor-induced low-pressure gas of microwave component in spacecraft[J]. Chinese Space Science and Technology, 43, 35-42(2023).
[3] ZHAO Bingbing, HE Liming, SHEN Ying et al. Experimental investigation of the chemical effect of direct current arc plasma igniter[J]. Spectroscopy and Spectral Analysis, 33, 1171-1174(2013).
[4] LI Yanfei, HAN Dong, QIU Zongjia et al. Characteristic emission spectrum analysis and discharge identification on the development process of air corona discharge[J]. Spectroscopy and Spectral Analysis, 42, 2956-2962(2022).
[5] ZHANG Yungang, LIU Huangtao, GAO Qiang et al. Time-resolved spectral characteristics of SF6 plasma under femtosecond laser-guided high-voltage discharge[J]. Acta Physica Sinica, 69, 185201(2020).
[6] CHEN Chi, ZHANG Chaoyang, FU Wenjie et al. Electron temperature diagnostics in microwave plasma chemical vapor deposition by optical emission spectroscopy[J]. Acta Photonica Sinica, 50, 0930001(2021).
[7] THIYAGARAJAN M, SARANI A, NICULA C. Optical emission spectroscopic diagnostics of a non-thermal atmospheric pressure helium-oxygen plasma jet for biomedical applications[J]. Journal of Applied Physics, 113, 1302-1303(2013).
[9] WEI Huan, CUI Wanzhao, LI Yanping et al[M]. Detection technology of multipactor in satellite microwave components, 72-102(2023).
[10] AEROSPACE REPORT NO[S]. Standard/Handbook for Radio Frequency (RF) Breakdown Prevention in Spacecraft Components, 30-43(2014).
[11] CHEN Zeyu, PENG Yubin, WANG Rui et al. Reaction dynamic process of low pressure discharge plasma in microwave resonant cavity[J]. Acta Physica Sinica, 71, 240702(2022).
[12] BOYLE W S, KISLIUK P. Departure from paschen's law of breakdown in gases[J]. Physical Review, 97, 255-259(1955).
[13] WANG Yuzhi, CHEN Xu[M]. Vacuum technology, 34-40(2007).
[14] CUI Wanzhao, LI Yun, ZHANG Hongtai et al[M]. Simulation method of multipactor and its application in satellite microwave components, 133-170(2019).
[15] BRANDENBURG R, MAIOROV V A, GOLUBOVSKII Y B et al. Diffuse barrier discharges in nitrogen with small admixtures of oxygen: discharge mechanism and transition to the filamentary regime[J]. Journal of Physics D: Applied Physics, 38, 2187(2005).
[16] XIE Weijie. Spectroscopic diagnostics of active species and their environmental chemical process of O2, N2, CO2 in cold plasma[D](2009).
[17] CAPITELLI M, FERREIRA C M, GORDIETS B F et al[M]. Plasma kinetics in atmospheric gases(2000).
[18] SLANGER T G, COPELAND R A. Energetic oxygen in the upper atmosphere and the laboratory[J]. Chemical Reviews, 103, 4731-4766(2003).
[19] GORDIETS B F, FERREIRA C M, GUERRA V L et al. Kinetic model of a low-pressure N2-O2 flowing glow discharge[J]. Plasma Science IEEE Transactions on, 23, 750-767(1995).
Get Citation
Copy Citation Text
Zhaolun YANG, Zeyu CHEN, Yubin PENG, Yongning HE, Wanzhao CUI. Microwave Resonant Cavity Discharge Breakdown Characterization and Emission Spectral Analysis[J]. Acta Photonica Sinica, 2024, 53(5): 0553115
Category: Special Issue for Microcavity Photonics
Received: Nov. 21, 2023
Accepted: Jan. 17, 2024
Published Online: Jun. 20, 2024
The Author Email: Wanzhao CUI (cuiwanzhao@126.com)