[1] Piper J A, Pask H M. Crystalline Raman lasers[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2007, 13(3):692-704.
[2] Zhang Fang, Wang Zhengping, Xu Xinguang. Anisotropy of stimulated Raman scattering in SrWO4 crystal[J]. Optics and Precision Engineering, 2014, 22(1):39-43. (in Chinese)
[3] Duan Y, Zhu H, Zhang Y, et al. RbTiOPO4 cascaded Raman operation with multiple Raman frequency shifts derived by Q-switched Nd:YAlO3 laser[J]. Scientific Reports, 2016, 6:33852.
[4] Wang Hui, Zhang Huifeng, Guo Tao. Dual-wavelength eye-safe laser based on Nd:GYSGG/YVO4 intracavity stimulated Raman conversion[J]. Infrared and Laser Engineering, 2015, 44(12):3512-3516. (in Chinese)
[5] Zhu H, Duan Y, Zhang G, et al. Yellow-light generation of 5.7 W by intracavity doubling self-Raman laser of YVO4/Nd:YVO4 composite[J]. Optics Letters, 2009, 34(18):2763-2765.
[6] Liu Z, Wang Q, Zhang X, et al. Self-frequency-doubled KTiOAsO4 Raman laser emitting at 573 nm[J]. Optics Letters, 2009, 34(14):2183-2185.
[7] Duan Y, Zhu H, Wang H, et al. Comparison of 1.15m Nd:YAG\KTA Raman lasers with 234 and 671 cm-1 shifts[J]. Optics Express, 2016, 24(5):5565-5571.
[8] Zhang Jing, Duan Yanmin, Zhang Dong, et al. Acoustooptic Q-switched intracavity Nd:YAG/RTP cascaded Raman laser[J]. Infrared and Laser Engineering, 2019, 48(6):0606006. (in Chinese)
[9] Shen H B, Wang Q P, Zhang X Y, et al. Second-Stokes dual-wavelength operation at 1321 and 1325 nm ceramic Nd:YAG/BaWO4 Raman laser[J]. Optics Letters, 2012, 37(21):4519-4521.
[10] Zhu H Y, Guo J H, Ruan X K, et al. Cascaded self-Raman laser emitting around 1.2-1.3m based on a ccut Nd:YVO4 crystal[J]. IEEE Photonics Journal, 2017, 9(2):1500807.
[11] Yu H H, Liu J H, Zhang H J, et al. Advances in vanadate laser crystals at a lasing wavelength of 1 micrometer[J]. Laser Photonics Reviews, 2015, 8(6):847-864.
[12] Ding Xin, Zhao Cen, Jiang Pengbo, et al. High efficiency actively Q-switched Nd:YVO4 self-Raman laser under 914 nm in-band pumping[J]. Infrared and Laser Engineering, 2017, 46(10):1005001. (in Chinese)
[13] Kaminskii A A, Bettinelli M, Dong J, et al. Nanosecond Nd3+:LuVO4 self-Raman laser[J]. Laser Physics Letters, 2010, 6(5):374-379.
[14] Chen Y F. High-power diode-pumped actively Q-switched Nd:YVO4 self-Raman laser:influence of dopant concentration[J]. Optics Letters, 2004, 29(16):1915-1917.
[15] Chen Y F. Efficient 1521 nm Nd:GdVO4 Raman laser[J]. Optics Letters, 2004, 29(22):2632-2634.
[16] Duan Yanmin, Zhu Haiyong, Feng Zhengrong, et al. Laser diode end-pumped Nd:YVO4 self-Raman laser at 559 nm with sum-frequency mixing[J]. Chinese Journal of Lasers, 2013, 40(5):9-12. (in Chinese)
[17] Lee A J, Lin J, Pask H M, Near-infrared and orange-red emission from a continuous-wave, second-Stokes self-Raman Nd:GdVO4 laser[J]. Optics Letters, 2010, 35(18):3000-3002.
[18] Du C L, Guo Y Y, Yu Y Q, et al. Diode-end-pumped Q-switched composite YVO4/Nd:YVO4/YVO4 crystal self-Raman second-Stokes laser[J]. Laser Physics Letters, 2013, 10(5):055802.
[19] Guo J, Zhu H Y, Chen S M, et al. Yellow, lime and green emission selectable by BBO angle tuning in Q-switched Nd:YVO4 self-Raman laser[J]. Laser Physics Letters, 2018, 15(7):075803.
[20] Yu Xueli, Ding Shuanghong, Jia Haixu, et al. Numerical simulation of actively Q-switched intracavity sum-frequency Raman laser[J]. Infrared and Laser Engineering, 2017, 46(9):0906001. (in Chinese)