[1] Kaplan M H. Survey of Space Debris Reduction Methods[R]. AIAA-2009-6619, 2009.
[2] Finkleman David. The dilemma of space debris[J]. American Scientist, 2014, 102(1):26-33.
[3] Wang Chenglin, Zhang Yan, Wang Kunpeng. Strategy of removing space debris using ground-based lasers[J]. Journal of Beijing University of Aeronautics and Astronautics, 2015, 41(11):2137-2143. (in Chinese)王成林, 张艳, 王鲲鹏. 地基激光清除空间碎片的策略[J]. 北京航空航天大学学报, 2015, 41(11):2137-2143.
[4] Phipps C R, Albrecht G, Friedman H, et al. ORION:Clearing near-earth space debris using a 20 kw, 530 nm, earth-based, repetitively pulsed laser[J]. Laser Particle Beams, 1996, 14(1):1-44.
[5] Esmiller B, Jacquelard C, Eckel H A, et al. Space debris removal by ground based laser main conclusions of the european project cleaspace[J]. Applied Optics, 2014, 53(31):45-54.
[6] Early J T, Bibeau C, Phipps C. Space debris de-orbiting by vaporization impulse using short pulse laser[C]//High-Power Laser Ablation. American Institute of Physics, 2004:190-204.
[7] Chang Hao, Jin Xing, Zhou Weijing. Experiment research on plasma plume expansion induced by nanosecond laser ablation Al[J]. Infrared and Laser Engineering, 2013, 42(S1):43-46. (in Chinese)常浩, 金星, 周伟静. 纳秒激光烧蚀铝等离子体羽流膨胀特性实验[J]. 红外与激光工程, 2013, 42(S1):43-46.
[8] Wang C, Zhang Y, Wang K. The shape effect of space debris on recoil impulse by pulsed laser ablation[C]//Proceedings of the SPIE, 2016, 152(10):101-130.
[9] Jin Xing, Chang Hao, Hong Yanji, et al. Impulse calculation for irregularly shaped space debris under laser irradiation[J]. High Power Laser and Particle Beams, 2012, 24(8):1956-1960. (in Chinese)金星, 常浩, 洪延姬, 等. 激光辐照不规则空间碎片反冲冲量计算[J]. 强激光与粒子束, 2012, 24(8):1956-1960.
[10] Liedahl D A, Rubenchik A, Libby S B, et al. Pulsed laser interactions with space debris:Target shape effects[J]. Advances in Space Research, 2013, 52(5):895-915.