[1] Akulin V M, Alimpiev S S, Karlov N V, et al. Appreciable increase of the dissociation rate of polyatomic molecules in the re shift of the nonresonant frequency under conditions of two-frequency laser action[J]. JETP Letters, 1977, 25(9):400-403.
[2] Shen Hongyuan. Dual wavelenglh crystal lasers[J]. Chinese Journal of Lasers, 1994, 21(5):334-340. (in Chinese)沈鸿元. 双波长晶体激光器[J]. 中国激光, 1994, 21(5):334-340.
[3] Lin Yanfeng, Zhang Ge, Zhu Haiyong, et al. Mechanism of dual-wavelength oscillation in Nd:YAG Q-switched laser[J]. Acta Physica Sinica, 2009, 58(6):3909-3914. (in Chinese)林燕凤, 张戈, 朱海永, 等. Nd:YAG调Q激光器双波长振荡机理分析[J]. 物理学报, 2009, 58(6):3909-3914.
[4] Shen H Y, Lin W X, Zeng R R, et al. Twice sum-frequency mixing of a dual-wavelength Nd:YAlO3 laser to get 413.7 nm violet coherent radiation in LilO3 crystal[J]. Journal of Applied Physics, 1991, 70(3):1880-1881.
[5] Shen H Y, Lin W X, Zeng R R, et al. Second-harmonic generation and sum-frequency mixing of double-wavelength Nd:YAlO3 laser to 413.71 nm violet coherent radiation in LilO3 crystal[J]. Journal of Applied Physics, 1992, 72(9):4472-4473.
[6] Weigl F. A generalized technique of two-wavelength, nondiffuse holographic interferometry[J]. Applied Optics, 1971, 10(1):187-192.
[7] Wang Jiaxian. Cavity design and its parameters choice for a dual-wavelength Nd:YAG/Cr4+:YAG laser[J]. Laser Journal, 2002, 23(5):14-15. (in Chinese)王加贤. 双波长输出的Nd:YAG/Cr4+:YAG激光器的腔设计与参数选择[J]. 激光杂志, 2002, 23(5):14-15.
[8] Wan Yong, Han Kai, Han Hong, et al. Repetitive, Raman shifted, (Nd, Ce):YAG laser with twin-wavelength outputs[J]. Laser Technology, 2002, 26(2):126-128. (in Chinese)万勇, 韩凯, 韩鸿, 等. 重频双波长输出(Nd, Ce):YAG喇曼频移激光器研究[J]. 激光技术, 2002, 26(2):126-128.
[9] Yan Ying, Luo Yu, Pan Qing, et al. Watt level CW frequency-stabilized Nd:YAP/KTP laser with dual wavelength outputs[J]. Chinese Journal of Lasers, 2004, 31(5):513-517. (in Chinese)延英, 罗玉, 潘庆, 等. 瓦级连续双波长输出Nd:YAP/KTP稳频激光器[J]. 中国激光, 2004, 31(5):513-517.
[10] Wang Jiaxian, Lv Fengping, Su Feiya. Investigation on a compound resonator Nd:YAG-Cr4+:YAGlaser[J]. Chinese Journal of Lasesrs, 2004, 31(4):399-402. (in Chinese)王加贤, 吕凤萍, 苏菲娅. 双调Q复合腔Nd:YAG-Cr4+:YAG激光器的研究[J]. 中国激光, 2004, 31(4):399-402.
[11] Wei Yong, Zhang Ge, Huang Chenghui, et al. A 1318.8 nm/1338 nm simultaneous dual wavelength Nd:YAG laser[J]. Laser and Infrared, 2005, 35(3):164-166. (in Chinese)魏勇, 张戈, 黄呈辉, 等. 1318.8 nm/1338 nm同时振荡双波长Nd:YAG激光器[J]. 激光与红外, 2005, 35(3):164-166.
[12] Zhang L, Wei Z, Feng B, et al. Simultaneous dual-wavelength Q-switched Nd:YAG laser operating at 1.06m and 946 nm[J]. Optics Communications, 2006, 264(1):51-54.
[13] Zhu H Y, Zhang G, Huang C H, et al. 1318.8 nm/1338.2 nm simultaneous dual-wavelength Q-switched Nd:YAG laser[J]. Applied Physics B, 2008, 90(3):451-454.
[14] Su H, Shen H Y, Lin W X, et al. Computational model of Q-switch Nd:YAlO3 dual-wavelength laser[J]. Journal of Applied Physics, 1998, 84(12):6519-6522.
[15] Lin Wenxiong, Shen Hongyuan. A new configuration of the laser cavity for simultaneous dual wavelength Q-switch pulsed Nd:YAlO3 laser[J]. Acta Physica Sinica, 1999, 48(4):667-672. (in Chinese)林文雄, 沈鸿元. 一种新型结构的Nd:YAlO3双波长调Q脉冲激光器[J]. 物理学报, 1999, 48(4):667-672.
[16] Lin Y Y, Chen S Y, Chiang A C, et al. Single-longitudinal-mode, tunable dual-wavelength, CW Nd:YVO4 laser[J]. Optics Express, 2006, 14(12):5329-5334.
[17] Chai Hongliang, Xue Lin, Huang Haitao, et al. Diode-pumped Nd:GdVO4 laser emitting at four wavelengths[J]. Laser and Infrared, 2007, 37(2):120-123. (in Chinese)柴洪亮, 薛林, 黄海涛, 等. 二极管泵浦Nd:GdVO4晶体四波长激光器[J]. 激光与红外, 2007, 37(2):120-123.
[18] Saito N, Akagawa K, Wada S, et al. Dual wavelength oscillation by electronic tuning of a Ti:sapphire laser for difference-frequency generation[C]//Conference on Lasers and Electro-Optics. Washington:Optical Society of America, 1998:68-69.
[19] Shen Hongyuan. Oscillation condition of simultaneous multiple wavelength lasing[J]. Chinese Physics Letters, 1990, 7(4):174-176.
[20] Shen H Y, Su H. Operating conditions of continuous wave simultaneous dual wavelength laser in neodymium host crystals[J]. Journal of Applied Physics, 1999, 86(12):6647-6651.
[21] Barnes N P, Gettemy D J, Esterowitz L, et al. Comparison of Nd 1.06 and 1.33m operation in various hosts[J]. IEEE Journal of Quantum Electronics, 1987, 23(9):1434-1451.
[22] Weber M J, Bass M, Andringa K, et al. Czochralski growth and properties of YAlO3 laser crystals[J]. Applied Physics Letters, 1969, 15(10):342-345.
[23] Shen Hongyuan, Lian Tianguan, Zheng Ruirong, et al. Measurement of the stimulated-emission cross-section for the 4F3/2-4I13/2 transition of Nd3+ in YAlO3 crystal[J]. IEEE Journal of Quantum Electronics, 1989, 25(2):144-146.
[24] Tucker A W, Birnbaum M, Fincher C L, et al. Stimulated-emission cross section at 1064 and 1342 nm in Nd:YVO4[J]. Journal of Applied Physics, 1977, 48(12):4907-4911.
[25] Singh S, Smith R G, Uitert L G V. Stimulated-emission cross section and fluorescent quantum efficiency of Nd3+ in yttrium aluminum garnet at room temperature[J]. Physical Review B, 1974, 10(6):2566-2572.