Chinese Journal of Lasers, Volume. 36, Issue 4, 833(2009)
Quartz Optical Filter Based on Rotatory Dispersion Effect Used for Intracavity Yellow Raman Laser
[1] [1] M. Francon. Optical Filters for Radiations Separation [M]. Beijing: Science Press,1984. 6
[3] [3] Chun Ye. Wavelength-tunable spectral filters based on the optical rotatory dispersion effect [J]. Appl. Opt., 2003, 42(22):4505~4513
[4] [4] Chun Ye. Liquid-crystal bandpass filter based on the optical rotatory dispersion effect [J]. Appl. Opt., 2004, 43(20):4007~4010
[6] [6] Shutao Li, Xingyu Zhang, Qingpu Wang et al.. Diode-side-pumped intracavity frequency-doubled Nd∶YAG/BaWO4 Raman laser generating average output power of 3.14 W at 590 nm [J]. Opt. Lett., 2007, 32(20):2951~2953
[7] [7] Yao Jianquan. Nonlinear Optics Frequency Conversion and Laser Tuning Technology [M]. Beijing: Science Press, 1995
[9] [9] Ye Zhenhuan, Lou Qihong, Dong Jingxing et al.. Harmonic solid laser pumped multi-wavelength Raman lasers [J]. Chinese J. Lasers, 2004, 31(8):904~906
[10] [10] Xiong Jianfang. Increasing the efficiency of SHG out of the laser resonant cavity [J]. Laser Journal, 1999, 20(2):39~41
[11] [11] Liao Yanbiao. Polarized Optics [M]. Beijing: Science Press, 2003. 133~135
[13] [13] Chun Ye. Low-loss tunable filter based on optical rotatory dispersion [J]. Appl. Opt., 2006, 45(6):1162~1168
Get Citation
Copy Citation Text
Wu Wendi, Wu Fuquan, Su Fufang, Zhang Shan, Zhang Xingyu. Quartz Optical Filter Based on Rotatory Dispersion Effect Used for Intracavity Yellow Raman Laser[J]. Chinese Journal of Lasers, 2009, 36(4): 833