[1] MAIMAN T H. Stimulated optical radiation in ruby[J]. Nature, 1960, 187(4736):493-494. doi: 10.1038/187493a0
[2] SHE HUI, TAN SHENG. Development and application prospects of high-energy laser weapon[J]. Infrared Laser Engineering, 2002, 6(31):267-271.
[3] ROBERT J. PAWLAK. Recent developments and near term directions for Navy laser weapons system (LaWS) testbed[J]. SPIE, 2012, 8547:854705.
[4] NA ROSO, RDC MOREIRA, JEB OLIVEIRA. High power laser weapons and operational implications[J]. J. Aerospace Technology & Management, 2014, 6(3):231-236.
[5] 苏毅, 万敏.高能激光系统[M].北京:国防工业出版社, 2004.

SU Y, WAN M. High Energy Laser System[M]. Beijing:National Defense Industry Press, 2004.(in Chinese)
[6] 罗威, 董文锋, 等.高功率激光器发展趋势[J].激光与红外, 2013, 8(43):845-852. http://www.cnki.com.cn/Article/CJFDTOTAL-JGHW201308002.htm

LUO W, DONG W F, et al.. Development trend of high power lasers[J]. Laser & Infrared, 2013, 8(43):845-852.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-JGHW201308002.htm
[7] 任国光.高能液体激光器升温正在走向系统集成[J].强激光研究与发展, 2005, 2:1-8.

REN G G. Development of high energy liquid Laser and its system integration phase[J]. High Energy Laser Research & Development, 2005, 2:1-8.(in Chinese)
[8] 王存恩.航天器件微小型化的必要性和紧迫感[J].863航天航空技术, 2006, 12:8-17.

WANG C E. Necessity and pressure of micro and miniaturized space devices[J]. 863 Technologies of Aviation and Astronautics, 2006, 12:8-17.(in Chinese)
[9] Jane's Electro-Optic Systems. Boeing/Lockheed Martin/Northrop Grumman YAL-1A Airborne Laser Testbed (ALTB) programme[EB/OL]. http://janes.ihs.com, 2012, 1:1-3.
[10] 杭任.美国机载激光武器及发展趋势[J].航空档案, 2015, 1:6-10. http://www.cnki.com.cn/Article/CJFDTOTAL-HWYJ2008S3089.htm

HANG R. Progresses and prospects of american airborne based laser weapons[J]. Aviation Archives, 2015, 1:6-10.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-HWYJ2008S3089.htm
[11] PAUL R. YODER. Opto-Mechanical Systems Design (Third Edition)[M]. SPIE Press, 2006.
[12] WARWICK, GRAHAM. Navy to demo 150-kW laser weapon for destroyers[J]. Aviation Week & Space Technology, 2016, 1.
[13] SCOTT, RICHARD. ONR contracts Northrop Grumman for solid-state laser weapon system demonstrator[J]. Jane's Navy International, 2015, 9(120).
[14] MATRIX Tactical Laser Weapon Demonstrates Conter-Swarm Techniques[EB/OL]. http://defense-update.com/20110830_mk30mod2_tactical_laser_systems.html.
[15] 董斌超, 张舸.超轻量化SiC反射镜的制备及性能[J].光学精密工程, 2015, 8(23):2185-2191. http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201508010.htm

DONG B CH, ZHANG G. Fabrication and properties of ultra-lightweight SiC mirror[J]. Opt. Precision Eng., 2015, 8(23):2185-2191.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201508010.htm
[16] 李志来, 徐宏, 关英俊.1.5 m口径空间相机主镜组件的结构设计[J].光学精密工程, 2015, 6(23):1635-1641. http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201506018.htm

LI ZH L, XU H, GUANG Y J. Structural design of 1.5 m mirror subassembly for space camera[J]. Opt. Precision Eng., 2015, 6(23):1635-1641.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201506018.htm
[17] COLEMAN B. COBB. Lightweight. compact superconducting power sources for solid state high energy lasers[C]. Proceeding of Intersociety Energy Conversion Engineering Conference (IECEC), Washington, DC.USA, 2002:66-69.
[18] AFZAL R S. Performance of the GLAS laser transmitter[J]. SPIE, 2006, 6100:1-9. http://cat.inist.fr/?aModele=afficheN&cpsidt=18393710
[19] 胡文华, 任士龙, 刘传胜, 等.小型化单横模单纵模激光二极管泵浦Nd:YAG激光器[J].光学仪器, 2013, 3(35):70-76. http://www.cnki.com.cn/Article/CJFDTOTAL-GXYQ201303014.htm

HU W H, REN SH L, LIU CH SH, et al. Miniature single transverse mode single longitudinal mode LD pumped Nd:YAG laser[J]. Optical Instruments, 2013, 3(35):70-76.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-GXYQ201303014.htm
[20] 邵明振, 邵春雷.高功率脉冲TEA CO2激光器主机结构设计与流场优化[J].红外与激光工程, 2012, 6(41):1508-1513.

SHAO M ZH, SHAO CH L. Design of structure and optimization of flow field for mainframe of high power TEA CO2 laser[J]. Infrared and Laser Engineering, 2012, 6(41):1508-1513.(in Chinese)
[21] 桑凤亭, 金玉奇, 多丽萍.化学激光及其应用[M].北京:化学工业出版社, 2006.

SANG F T, JIN Y Q, DUO L P. Overview and Usage of Chemical Lasers[M]. Beijing:Chemical Industry Press, 2006.(in Chinese)
[22] TODD A M M, COLSON W B, NEIL G R. Megawatt-class free-electron laser concept for shipboard self-defense[J]. Free-Electron Laser Challenges, 1997, 2988:176-184. doi: 10.1117/12.274380
[23] LAVAN M J, WACHS J J. U.S. Army High Energy Laser (HEL) technology program[J]. Technologies for Optical Countermeasures Ⅷ, 2011, 9(8187):818704. http://cat.inist.fr/?aModele=afficheN&cpsidt=25529275
[24] RICHARDSON D J, NILSSON J, CLARKSON W A. High power fiber lasers:current status and future perspectives[J]. J. Optical Society of America B, 2010, 11(27):B63-B92. http://8.18.37.105/aop/abstract.cfm?uri=josab-27-11-B63
[25] LUDEWIGT K, RIESBECK T, GRAF A, et al.. 50 kW laser weapon demonstrator of Theinmetall Waffe munition[J]. Technology and Systems. International Society for Optics and Photonics, 2013, 8898:88980N.
[26] 中国光电网. 武汉锐科推出10kW光纤激光器[EB/OL]. http://www.optochina.net/html/zx/xw/41994.html, 2014-03-18.

Chinese Opt-electrical Web. 10 kW Fiber Laser of Ruike in Wuhan[EB/OL]. http://www.optochina.net/html/zx/xw/41994.html, 2014-03-18. (in Chinese)
[27] QU Z, LI Q, MENG H, et al.. Application and the key technology on high power fiber-optic laser in laser weapon[J]. SPIE, 2014, 9294:92940C. http://proceedings.spiedigitallibrary.org/proceeding.aspx?articleid=2035141
[28] SWEETMAN, BILL. Laser technology heads for key tests. aviation[J]. Week & Space Technology, 2015, 31(177).
[29] High Energy Liquid Laser Area Defense System (HELLADS) Programme, United States of America[EB/OL]. http://www.airforce-technology.com/projects/high-energy-liquid-laser-programme/.
[30] HELLADS[EB/OL]. http://www.ga-asi.com/hellads.
[31] WARWICK, GRAHAM. General atomics:third-gen electric laser weapon now ready[J]. Aviation Week & Space Thchnology, 2015, 3(1):30-31.
[32] General Atomics:Third-Gen Electric Laser Weapon Now Ready[EB/OL]. http://aviationweek.com/technology/general-atomics-third-gen-electric-laser-weapon-now-ready.
[33] 王祖典.美减轻机载激光器重量[J].国防科技-2, 2005, 1:29.

WANG Z D. America lose weight of the airborne based laser[J]. National Defense Technology-2, 2005, 1:29.(in Chinese)
[34] HECHT, JEFF. LOOKING BACK/LOOKING FORWARD:a long way from the ruby laser[J]. Laser Focus World, 2015, 2(51):23-29.
[35] Joint High Power Solid State Laser (JHPSSL)[EB/OL]. http://www.globalsecurity.org/military/systems/ground/jhpssl.html.
[36] U.S. developed a new laser weapon which is expected to be used to F-35 fighter[J]. Chinese Optics, 2016, 9(1):176-177.(in Chinese)
[37] 田长青, 徐洪波, 曹宏章, 等.高功率固体激光器冷却技术[J].中国激光, 2009, 7(36):1686-1692. http://www.cnki.com.cn/Article/CJFDTOTAL-QJGY201012003.htm

TIAN C Q, XU H B, CAO H ZH, et al.. Cooling technology for high-power solid-state laser[J]. Chinese J. Lasers, 2009, 7(36):1686-1692.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-QJGY201012003.htm
[38] 杨晓涛, 马修真, 刘友.高能量激光二极管侧面抽运风冷Nd:YAG脉冲激光器[J].激光与光电子学进展, 2011, 11(48):11405. http://www.cnki.com.cn/Article/CJFDTOTAL-JGDJ201111021.htm

YANG X T, MA X ZH, LIU Y. High-energy LD side-pumped Q-switched air cooling Nd:YAG laser[J]. Laser & Optoelectronics Progress, 2011, 11(48):11405.(in Chinese) http://www.cnki.com.cn/Article/CJFDTOTAL-JGDJ201111021.htm