• Laser & Optoelectronics Progress
  • Vol. 54, Issue 9, 91204 (2017)
Wu Pengfei*
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/lop54.091204 Cite this Article Set citation alerts
    Wu Pengfei. Influences of Different Aberrations on Focusing Performance of Laser Focusing System[J]. Laser & Optoelectronics Progress, 2017, 54(9): 91204 Copy Citation Text show less
    References

    [1] Shi Lei, Zhao Shanghong, Chu Xingchun, et al. Experimental and numerical study of air-breathing mode propulsion by solid Nd∶glass nanosecond pulse laser[J]. Chinese J Lasers, 2010, 37(1): 100-104.

    [2] Ye Jifei, Hong Yanji, Li Nanlei. Experimental study on thrust performance of carbon doped liquid working substance processed by laser ablation[J]. Chinese J Lasers, 2017, 44(2): 0202001.

    [3] Hong Y, Song J, Cui C, et al. Numerical study of energy conversion process in air-breathing laser propulsion[J]. Applied Physics A, 2011, 105(1): 189-196.

    [4] Wang Chenglin, Zhang Yan, Wang Kunpeng. Effect of impulse coupling coefficient on impulse vector of laser irradiating space debris[J]. Laser & Optoelectronics Progress, 2016, 53(12): 121404.

    [5] Sheng Deren, Shi Xiangkun, Chen Jianhong, et al. Research progress of laser propulsion with liquid propellants[J]. Laser & Optoelectronics Progress, 2014, 51(5): 050002.

    [6] Yang Yang. Appraisal of several CO2 laser beam focusing method[J]. Laser Journal, 1999, 20(2): 29-32.

    [7] Bohn W L. Laser lightcraft performance[C]. SPIE, 2000, 3885: 48-53.

    [8] Myrabo L N, Libeau M A, Meloney E D, et al. Pulsed laser propulsion performance of 11 cm parabolic bell engines within the atmosphere[C]. SPIE, 2004, 5448: 450-464.

    [9] Davis E W, Mead F B, Jr. Review of laser lightcraft propulsion system[J]. AIP Conference Proceedings, 2008, 997(1): 283-294.

    [10] Ageichik A A, Egorov M S, Rezunkov Y A, et al. Experimental study on thrust characteristics of airspace laser propulsion engine[J]. AIP Conference Proceedings, 2004, 702(1): 49-60.

    [11] Rezunkov A A, Safronov A L, Ageichik A A, et al. Performance characteristics of laser propulsion engine operating both in CW and in repetitively-pulsed modes[J]. AIP Conference Proceedings, 2006, 830(1): 3-13.

    [12] Sasoh A, Yu X, Ohtani T, et al. In-tube laser propulsion; performance and application prospects[J]. AIP Conference Proceedings, 2003, 702(1): 61-67.

    [13] Feikema D. Analysis of the laser propelled lightcraft vehicle[C]. 31st Plasmadynamics and Lasers Conference, 2000: 2348.

    [14] Cui Cunyan, Hong Yanji, He Guoqiang, et al. Influence of linear nozzle structure on impulse coupling coefficient of laser thruster[J]. High Power Laser and Particle Beams, 2006, 18(2): 193-196.

    [15] Cui Cunyan, Hong Yanji, Wang Jun, et al. Influence of focusing system structure on propulsion performance of laser thruster[J]. Chinese J Lasers, 2006, 33(6): 739-742.

    [16] Shi Hongbin, Cheng Zhaogu, Jiang Jinbo, et al. Study on misalignment of parabolic mirror in lightcraft vehicle[C]. SPIE, 2000, 4065: 371-378.

    [17] Cheng Fuqiang, Dou Zhiguo, Xiao Longsheng, et al. Design and simulation of the twice reflecting laser focusing system based on ZEMAX[J]. Optical Technique, 2016(5): 403-407.

    [18] Freniere E R. Numerical experiments in modeling diffraction phenomena with Monte Carlo ray tracing[C]. SPIE, 2006, 6289: 1-12.

    Wu Pengfei. Influences of Different Aberrations on Focusing Performance of Laser Focusing System[J]. Laser & Optoelectronics Progress, 2017, 54(9): 91204
    Download Citation