Infrared and Laser Engineering, Volume. 50, Issue 12, 20200227(2021)
Efficient wavelength-locked 878.6 nm diode-modulated-pumped Nd: YVO4 self-Raman laser
[1] W Chen, Y Inagawa, T Omatsu, et al. Diode-pumped, self-stimulating, passively
[2] Y F Chen. High-power diode-pumped actively Q-switched Nd:YVO4 self-Raman laser: Influence of dopant concentration. Optics Letters, 29, 1915-1917(2004).
[3] S H Ding, X Y Zhang, Q P Wang, et al. Theoretical and experimental study on the self-Raman laser with Nd:YVO4 crystal. IEEE Journal of Quantum Electronics, 42, 927-933(2006).
[4] J Lin, H M Pask. Nd:GdVO4 self-Raman laser using double-end polarised pumping at 880 nm for high power infrared and visible output. Applied Physics B, 108, 17-24(2012).
[5] C C Kores, J Jakutis-Neto, D Geskus, et al. Diode-side-pumped continuous wave Nd3+:YVO4 self-Raman laser at 1176 nm. Optics Letters, 40, 3524-3527(2015).
[6] H Zhu, Y Duan, G Zhang, et al. Efficient second harmonic generation of double-end diffusion-bonded Nd:YVO4 self-Raman laser producing 7.9 W yellow light. Optics Express, 17, 21544-21550(2009).
[7] Gholamreza Shayeganrad. Actively
[8] Q Sheng, X Ding, B Li, et al. Efficient Nd:YVO4 self-Raman laser in-band pumped by wavelength-locked laser diode at 878.7 nm. Journal of Optics, 16, 1-5(2014).
[9] P Dekker, H M Pask, D J Spence, et al. Continuous-wave, intracavity doubled, self-Raman laser operation in Nd:GdVO4 at 586.5 nm. Optics Express, 15, 7038-7046(2007).
[10] X D Li, X Yu, F Chen, et al. Laser properties of continuous-grown Nd: GdVO4/GdVO4 and Nd: YVO4/YVO4 composite crystals under direct pumping. Optics Express, 17, 12869-12874(2009).
[11] F Q Li, K Liu, N Zong, et al. Compact 7.8-W 1-GHz-repetition-rate passively mode-locked TEM00 Nd:YVO4 laser under 880 nm diode direct-in-band pumping. Optics Communications, 284, 4619-4622(2011).
[12] Q Sheng, L Liu, X Ding, et al. Thermal management of Nd:YVO4 laser by 808-/880-nm dual-wavelength pumping. IEEE Photonics Journal, 8, 1501307(2017).
[13] Q Sheng, R Li, A Lee, et al. A single-frequency intracavity Raman laser. Optics Express, 27, 8540-8553(2019).
[14] B Li, X Ding, B Sun, et al. 12.45 W wavelength-locked 878.6 nm laser diode in-band pumped multisegmented Nd:YVO4 laser operating at 1342 nm. Applied Optics, 53, 6778-6781(2014).
[15] Q Sheng, A Lee, D Spence, et al. Wavelength tuning and power enhancement of an intracavity Nd:GdVO4-BaWO4 Raman laser using an etalon. Optics Express, 26, 32145-32155(2018).
[16] P B Jiang, G Z Zhang, J Liu, et al. 16.7 W 885 nm diode-side-pumped actively Q-switched Nd:YAG/YVO4 intracavity Raman laser at 1176 nm. Journal of Physics D: Applied Physics, 50, 465303(2017).
[17] S Antipov, A Sabella, R Williams, et al. 1.2 kW quasi-steady-state diamond Raman laser pumped by an
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Bing Sun, Xin Ding, Pengbo Jiang, Yuntao Bai, Xuanyi Yu, Jingbo Wang, Lei Zhao, Yang Liu, Tengteng Li, Liang Wu, Guizhong Zhang, Jianquan Yao. Efficient wavelength-locked 878.6 nm diode-modulated-pumped Nd: YVO4 self-Raman laser[J]. Infrared and Laser Engineering, 2021, 50(12): 20200227
Category: Lasers & Laser optics
Received: Jun. 10, 2021
Accepted: --
Published Online: Feb. 9, 2022
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