激光技术, 2018, 42 (3): 325, 网络出版: 2018-05-29   

多波长掺铒光纤激光放大器的放大特性研究

Amplification characteristics of multiwavelength erbium-doped fiber laser amplifiers
作者单位
1 西南技术物理研究所, 成都 610041
2 通化师范学院 物理学院, 通化 134001
引用该论文

张博, 张恩涛, 胡小川, 何幸锴, 沈琪皓, 陈玥洋, 张勍, 李策. 多波长掺铒光纤激光放大器的放大特性研究[J]. 激光技术, 2018, 42(3): 325.

ZHANG Bo, ZHANG Entao, HU Xiaochuan, HE Xingkai, SHEN Qihao, CHEN Yueyang, ZHANG Qing, LI Ce. Amplification characteristics of multiwavelength erbium-doped fiber laser amplifiers[J]. Laser Technology, 2018, 42(3): 325.

参考文献

[1] MARAN J, LAROCHELLE S, BESNARD P, et al.C-band multi-wavelength frequency-shifted erbium doped fiber laser [J].Optics Communications,2003,218(1):81-86.

[2] BELLEMARE A, KARASEK M, ROCHETTE M, et al. Room temperature multi-frequency erbium-doped fiber lasers anchored on the ITU frequency gdd[J].Journal of Lightwave Technology ,2000, 18(6):825-831.

[3] KIM S K, CHU M J, LEE J H, et al. Wideband multi-wavelength erbium-doped fiber ring laser with frequency shifted feedback[J].Optics Communications,2001,190(1):291-302.

[4] WANG R, WENG D, LI K, et al.Multi-wavelength Erbium-doped fiber laser based on four wave mixing effect in single mode fiber and high nonlinear fiber[J].Optics Express,2013,21(10):12570-12578.

[5] XIAO P P, DENG M L, HU H W. Multi-wavelength and single longitudinal mode brillouinfiber lasers based on passive cavities[J].Laser Technology,2016,40(5):727-729(in Chinese).

[6] SHAHABUDDIN N S, AHMAD H, YUSOFF Z, et al. Spacing-switchable multi-wavelength fiber laser based on nonlinear polarization rotation and brillouinscatteringin photonic crystal fiber[J] .IEEE Photonics Journal,2012,4(1):34-38.

[7] YAO B, TONG Zh R, YANG X F, et al .Tunable multiwavelength fiber laser based on stimulated brillouin scattering[J]. Infrared and Laser Engineering,2012,41(4):919-923(in Chinese).

[8] WANG R G, ZHAO L, ZHANG X P. Research of tunable multi-wavelength laser based on amplification effect of stimulated brillouin scattering[J].Journal of Optoelectronics·Laser, 2015,26(6):1025-1029(in Chinese).

[9] LI Y, FENG X H, SUN L, et al. Dual-wavelength fiber laser based on polarization hole-burning effect at room temperature[J].Acta Photonica Sinica,2005,34(2):173-175(in Chinese).

[10] DONG F J, YANG X F, CAO Y, et al. Dual-wavelength Er-doped fiber laser based on polarization hole burning of multi-mode fiber[J].Journal of Optoelectronics·Laser, 2011, 22(6):841-844(in Chinese).

[11] ZHANG Ch F, SUN J, JIAN Sh Sh, et al. A new mechanism to suppress the homogeneous gain broadening for stable multi-wavelength erbium-doped fiber laser[J].Optics Communications,2013,288(2): 97-100.

[12] DONG J L,SUN J Q.Multiwavelength erbium-doped fiber laser based on frequency shift and polarization hole burning[J].Laser Technology,2008,32(2):210-214(in Chinese).

[13] HE X K, HOU H, FENG L T, et al. Experimental study of 1550nm single frequency pulsed fiber laser amplifier[J]. Laser Technology,2011,35(2):146-151(in Chinese).

[14] ZHANG X, LIU Y, HE Y, et al.Characteristics of eye-safe high repetition frequency narrow pulse width single mode all fiber laser[J].Infrared and Laser Engineering,2015,44(4):1105 -1109(in Chinese).

[15] SHINIZU M, HORIGUCHI M, YAMADA M, et al.Highly efficient integrated optical fiber amplifier module pumped by a 0.98nm laser diode[J].Electronics Letters,1990,26(8):498-501.

[16] DU G G, CHEN G F, LIU D F. Theoretical Studies on the distribution of pump power for 980nm pumped erbium-doped fiber amplifier[J].Acta Photonica Sinica,2000,20(2):175-180(in Chinese).

[17] ZHAO Zh Y. Theoretical and experimental study on high power photonics crystal fiber amplifier[D].Xi’an:Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Science, 2009:18-22 (in Chinese).

[18] LENG J Y. Theoretical and experimental study of narrow linewidth fiber amplifier[D]. Changsha:National University of Defense Technology, 2011:59-62(in Chinese).

[19] XU H B, CHEN L. Studies on the out put characteristic of erbium-doped fiber laser[J].Acta Photonica Sinica,2004,33(7):777-781(in Chinese).

[20] ZHOU Y X, NIE Q H, ZHOU Y,et al. Numerical Simulations on gain saturation characteristics of erbium-doped tellurite-based optical fiber amplifier.[J]Acta Photonica Sinica,2003,32(6) :679-682(in Chinese).

张博, 张恩涛, 胡小川, 何幸锴, 沈琪皓, 陈玥洋, 张勍, 李策. 多波长掺铒光纤激光放大器的放大特性研究[J]. 激光技术, 2018, 42(3): 325. ZHANG Bo, ZHANG Entao, HU Xiaochuan, HE Xingkai, SHEN Qihao, CHEN Yueyang, ZHANG Qing, LI Ce. Amplification characteristics of multiwavelength erbium-doped fiber laser amplifiers[J]. Laser Technology, 2018, 42(3): 325.

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