[1] CHEN Y F, HUANG T M, KAO C F, et al. Design criteria for concentration optimization in scaling fiber-coupled laser-diode end-pumped lasers to higher power: influence of thermal effect[J]. IEEE Journal of Quantum Electronics, 1997, 33(8): 1424-1429. [2] CHEN Y F, KUO H J. Determination of the thermal loading of diode-pumped Nd∶YVO4 by use of thermally induced second-harmonic output depolarization[J]. Optics Letters, 1998, 23(11): 846-848. [3] 李志刚,熊政军,黄维玲,等.高功率激光二极管端面抽运复合晶体激光器的研究[J].中国激光,2005,32(3):297-300. LI Z G, XIONG Z J, HUANG W L, et al. Study of high power laser diode end-pumped composite crystal lasers[J]. Chinese Journal of Lasers, 2005, 32(3): 297-300(in Chinese). [4] PENG X Y, ASUNDI A, CHEN Y H, et al. Study of the mechanical properties of Nd∶YVO4 crystal by use of laser interferometry and finite-element analysis[J]. Applied Optics, 2001, 40(9): 1396. [5] 史 彭,李 隆,甘安生,等.端面抽运矩形截面Nd∶GdVO4晶体热效应研究[J].中国激光,2005,32(7):923-928. SHI P, LI L, GAN A S, et al. Thermal effect research of end-pumped rectangle Nd∶GdVO4 crystals[J]. Chinese Journal of Lasers, 2005, 32(7): 923-928(in Chinese). [6] 曹海宾,高 峰,范 婷,等.激光二极管端泵平板Nd∶YAG、Nd∶YVO4和Nd∶GdVO4晶体热效应比较[J].红外与激光工程,2011,40(12):2365-2369. CAO H B, GAO F, FAN T, et al. Comparison of thermal effects of Nd∶YAG, Nd∶YVO4 and Nd∶GdVO4 crystal slab by laser diode end-pumped[J]. Infrared and Laser Engineering, 2011, 40(12): 2365-2369(in Chinese). [7] XU M, YU H H, ZHANG H J, et al. Continuous-wave laser performance of composite Nd∶LuVO4 crystals[J]. Laser Physics Letters, 2011, 8(4): 269-273. [8] LI X D, YU X, CHEN F, et al. Laser properties of continuous-grown GdVO4/Nd∶GdVO4 composite crystal[J]. Laser Physics Letters, 2009, 6(9): 631-634. [9] CHEN D Y, LI X D, ZHANG Y, et al. Research on diffusion-bonding composite YVO4/Nd∶GdVO4 crystal[J]. Laser Physics Letters, 2011, 8(1): 46-49. [10] 李 隆,史 彭,刘小芳,等.YVO4-Nd∶YVO4复合晶体热效应研究[J].光学 精密工程,2006,14(5):786-791. LI L, SHI P, LIU X F, et al. Thermal effect of YVO4-Nd∶YVO4 composite laser crystals[J]. Optics and Precision Engineering, 2006, 14(5): 786-791(in Chinese). [11] WANG X M, LI G Q, ZHAO S Z, et al. Diode-pumped passively mode-locked composite Nd∶YVO4/Nd∶YVO4/Nd∶YVO4 laser with a SESAM[J]. Laser Physics, 2015, 25(9): 095003. [12] WANG X M, LI G Q, ZHAO S Z, et al. Theoretical and experimental study on passive mode-locking composite Nd∶GdVO4/Nd∶GdVO4/Nd∶GdVO4 lasers[J]. Optical Materials, 2016, 62: 279-284. [13] 陈建彬,林 羽,李国辉,等.提拉法YVO4+Nd∶YVO4复合晶体的生长研究[J].人工晶体学报,2014,43(6):1387-1391. CHEN J B, LIN Y, LI G H, et al. Study on growth of YVO4+Nd∶YVO4 composite crystal by czochralski method[J]. Journal of Synthetic Crystals, 2014, 43(6): 1387-1391(in Chinese). [14] 张怀金,武 奎,于浩海,等.激光激活离子掺杂浓度梯度的钒酸盐复合晶体及其制备方法: CN102534791A[P].2012-07-04. ZHANG H J, WU K, YU H H, et al. Vanadate composite crystal with laser activated ion doping concentration gradient and its preparation method: CN102534791A[P].2012-07-04(in Chinese). [15] 杨宏志,卓 壮,赵圣之,等.Nd∶YVO4/YVO4晶体的热键合及其激光性质的研究[J].人工晶体学报,2006,35(6):1172-1175. YANG H Z, ZHUO Z, ZHAO S Z, et al. Diffusion bonding of Nd∶YVO4/YVO4 crystals and its laser property[J]. Journal of Synthetic Crystals, 2006, 35(6): 1172-1175(in Chinese). [16] GALUTSKIY V V, VATLINA M I, STROGANOVA E V. Growth of single crystal with a gradient of concentration of impurities by the Czochralski method using additional liquid charging[J]. Journal of Crystal Growth, 2009, 311(4): 1190-1194. [17] HUR M G, YANG W S, SUH S J, et al. Optical properties of EFG grown Nd∶YVO4 single crystals dependent on Nd concentration[J]. Journal of Crystal Growth, 2002, 237/238/239: 745-748. [18] SHUR J W, KOCHURIKHIN V V, BORISOVA A E, et al. Photoluminescence properties of Nd∶YVO4 single crystals by multi-Die EFG method[J]. Optical Materials, 2004, 26(4): 347-350. [19] ZHAO B, ZHUANG N F, LI T, et al. Growth and laser characterization of a mixed laser crystal Nd∶Lu0.141Y0.855VO4[J]. Journal of Crystal Growth, 2011, 335(1): 115-120. [20] BALDINA N A, VASEKIN B V, GONCHAROV V A. Mathematical modeling of radial impurity distribution in crystals grown under laminar convection conditions[J]. Theoretical Foundations of Chemical Engineering, 2009, 43(4): 353-360. [21] MIERCZYK Z, MAJCHROWSKI A, KITYK I V, et al. ZnSe∶Co2+: nonlinear optical absorber for giant-pulse eye-safe lasers[J]. Optics & Laser Technology, 2003, 35(3): 169-172. [22] HU B Q, ZHANG Y Z, WU X, et al. Defects in large single crystals Nd∶YVO4[J]. Journal of Crystal Growth, 2001, 226(4): 511-516. |