• Infrared and Laser Engineering
  • Vol. 50, Issue 11, 20210022 (2021)
Dongsheng Liu1、2, Xu Liang2, Ying Lin2, Yifan Xu2, and Xiaodong Fang2、3
Author Affiliations
  • 1Institude of Physical Science and Information Technology, Anhui University, Hefei 230601, China
  • 2Anhui Institute of Optics and Fine Mechanics, Hefei Institute of Physical Science, Chinese Academy of Sciences, Hefei 230031, China
  • 3Shenzhen ShengFang Tech Co., Ltd., Shenzhen 518100, China
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    DOI: 10.3788/IRLA20210022 Cite this Article
    Dongsheng Liu, Xu Liang, Ying Lin, Yifan Xu, Xiaodong Fang. Simulink simulation guiding the experimental exploration of long pulse width of discharge excimer laser[J]. Infrared and Laser Engineering, 2021, 50(11): 20210022 Copy Citation Text show less
    References

    [1] Y S Yu, L B You, X Liang, et al. Progress of excimer lasers technology. Chinese Journal of Lasers, 37, 2253-2270(2010).

    [2] Q H Lou. Progress of excimer lasers and its applications. Chinese Journal of Lasers, A21, 361-364(1994).

    [3] N Pan, X Liang, Y Lin, et al. Transmission method of analog signal in excimer laser system. Infrared and Laser Engineering, 48, 0905003(2019).

    [4] Z S Zhao, H Zhang, H M Gu, et al. Medical application of excimer laser. Acta Laser Biology Sinica, 5, 806-809(1996).

    [5] E B Lu, Z M Liu. Recent research on laser treatment of cardiovascular diseases. Journal of Norman Bethune University of Medical Science, 13, 378-380(1987).

    [6] Y Q Gu, L R Guo, L X Qi, et al. Treatment of 3 cases of chronic ischemia of lower extremity artery with excimer laser ablation combined with drug balloon. Journal of Interventional Radiology, 26, 10-14(2017).

    [7] Y L Ma, C F Cao, W N Jiang, et al. Application of excimer laser coronary ablation in complicated coronary artery disease. Chinese Circulation Journal, 34, 134-138(2019).

    [8] X H Zhao, Y Gao, M J Xu, et al. Studies on nanosecond laser induced damage to silica fibers. Acta Physica Sinica, 57, 5027-5034(2008).

    [9] R C Sze. Inductively stabilized rare-gas halide minilaser for long-pulsed operation. Journal of Applied Physics, 54, 1224-1227(1983).

    [10] M Sugii, M Ando, K Sasaki. Simple long-pulse XeCl laser with narrow-line output. IEEE Journal of Quantum Electronics, 24, 1458-1460(1987).

    [11] M Sugii, M Okabe, A Watanabe, et al. Single-stage high-beam-quality XeCl laser with a phase-conjugate brillouin mirror. Journal of Applied Physics, 24, 2264-2269(1988).

    [12] G C Wang, Z P Zhang, Y R Chen, et al. The characteristic studies of a long pulsed XeCl laser. Chinese Journal of Quantum Electronics, 13, 513-516(1996).

    [13] H M Gu, Z S Zhao, M Kuang, et al. Study of a 150 ns long pluse XeCl excimer laser. Chinese Journal of Lasers, 24, 297-301(1997).

    [14] W C Wang, J C Zhao. Research on the discharge characteristics of pulse forming network (PFN). Modern Electronic Technology, 38, 144-146(2015).

    [15] T H Hughes, A Morelli, M C Smith, et al. On a concept of genericity for RLC networks. Systems & Control Letters, 134, 104562(2019).

    [16] Bluhm H. Pulsed Power System Principles Applications[M]. Jiang Weihua, Zhang Chi, translated. Beijing: Tsinghua University Press, 2008. (in Chinese)

    Dongsheng Liu, Xu Liang, Ying Lin, Yifan Xu, Xiaodong Fang. Simulink simulation guiding the experimental exploration of long pulse width of discharge excimer laser[J]. Infrared and Laser Engineering, 2021, 50(11): 20210022
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