[1] 徐啓阳,王新兵.高功率连续CO2激光器[M].北京:国防科技出版社,2000. XU Q Y, WANG X B.High power CW CO2 laser[M].Beijing:National Defense Science and Technology Press, 2000(in Chinese). [2] 唐霞辉.高功率横流CO2激光器及其应用[M].武汉:华中科技大学出版社,2008. TANG X H.High power transverse flow CO2 laser and its application[M].Wuhan:Huazhong University of science and Technology Press, 2008(in Chinese). [3] 余怀之.红外光学材料[M].2版.北京:国防工业出版社,2015. YU H Z.Infrared optical materials[M].2nd ed.Beijing:National Defense Industry Press, 2015(in Chinese). [4] HARRIS D C.Durable 3-5 μm transmitting infrared window materials[J].Infrared Physics & Technology, 1998, 39(4):185-201. [5] SPARKS M.Optical distortion by heated windows in high-power laser systems[J].Journal of Applied Physics, 1971, 42(12):5029-5046. [6] SUSSMANN R S, SCARSBROOK G A, WORT C J H, et al.Laser damage testing of CVD-grown diamond windows[J].Diamond and Related Materials, 1994, 3(9):1173-1177. [7] BRIERLEY C J, BECK C M, KENNEDY G R, et al.The potential of CVD diamond as a replacement to ZnSe in CO2 laser optics[J].Diamond and Related Materials, 1999, 8(8/9):1759-1764. [8] SUSSMANN R, BRANDON J, COE S, et al.CVD diamond:a new engineering material for thermal, dielectric and optical applications[J].Industrial Diamond Review, 1998, 58(3):69. [9] 吝君瑜,王小兵,程 勇.金刚石薄膜及其在军事光学元件上的应用与制备[J].国防技术基础,2003(6):22-24. LIN J Y, WANG X B, CHENG Y.Diamond film and its application and preparation in military optical elements[J].Technology Foundation of National Defence, 2003(6):22-24(in Chinese). [10] 李义锋,唐伟忠,苏静杰,等.环形天线-椭球谐振腔式MPCVD装置高功率下沉积高品质金刚石膜[J].人工晶体学报,2016,45(8):2028-2033. LI Y F, TANG W Z, SU J J, et al.Deposition of high quality diamond films with high power by a circumferential antenna ellipsoidal cavity type MPCVD reactor[J].Journal of Synthetic Crystals, 2016, 45(8):2028-2033(in Chinese). [11] 吕反修.金刚石膜制备与应用-上卷[M].北京:科学出版社,2014. LV F X.Preparation and application of diamond film-Volume 1[M].Beijing:Science Press, 2014(in Chinese). [12] PAKHOMOV A V, LIN J, TAN R Q.Air pressure effect on propulsion with transverslyexcited atmospheric CO2laser[J].AIAA Journal, 2006, 44(1):136-141. [13] LU F X, GUO H B, GUO S B, et al.Magnetron sputtered oxidation resistant and antireflection protective coatings for freestanding diamond film IR windows[J].Diamond and Related Materials, 2009, 18(2/3):244-248. [14] HUA C Y, CHEN L X, LI C M, et al.Effects of oxygen-to-argon ratio on crystalline structure and properties of Y2O3 anti-reflection films for freestanding CVD diamond[J].Journal of Alloys and Compounds, 2017, 693:468-473. [15] MOLLART T P, LEWIS K L.Transition metal oxide anti-reflection coatings for airborne diamond optics[J].Diamond and Related Materials, 2001, 10(3/4/5/6/7):536-541. [16] KLEMM K A, PATTERSON H S, JOHNSON L F, et al.Protective optical coatings for diamond infrared windows[C]//SPIE's 1994 International Symposium on Optics, Imaging, and Instrumentation.Proc SPIE 2286, Window and Dome Technologies and Materials IV, San Diego, CA, USA.1994, 2286:347-356. [17] KOMLENOK M S, PIVOVAROV P A, VOLODKIN B O, et al.High-damage-threshold antireflection coatings on diamond for CW and pulsed CO2 lasers[J].Laser Physics Letters, 2018, 15(3):036001. |