参考文献/References:
[1] LIU Yan-ge, YUAN Shu-zhong, KAI Gui-yun, et al. Stable room-temperature multi-wavelength lasing realization in ordinary erbium-doped fiber loop lasers[J]. Optics Express, 2006, 14(20): 9293-9298.
[2] Dawson J W, Park N, Vahala K J. Co-lasing in an electrically tunable erbium-doped fiber laser[J]. Applied Physics Letters, 1992, 60(5): 3090-3092.
[3] Takahashi H, Toba H, Inoue Y. Multiwavelength ring laser composed of EDFAs and an arrayed-waveguide wavelength multiplexer[J]. Electronics Letters, 1994, 30(1): 44-45.
[4] Miyazaki T, Edagawa N, Yamamoto S, et al. A multiwavelength fiber ring-laser employing a pair of silica-based arrayed-waveguide-gratings[J].IEEE Photonics Technology Letters, 1997, 9(7): 910-912.
[5] Kim S K, Chu M J, Lee J H. Wideband multiwavelength erbium-doped fiber ring laser with frequency shifted feedback[J]. Optics Communications, 2001, 190(1): 291-302.
[6] O’Riordan C, Connelly M J. Multiwavelength actively mode-locked fiber ring laser with a dispersion compensated cavity[J]. Optics Communications, 2010, 283(9): 1865-1868.
[7] WANG Fei, ZHANG Xin-liang, YU Yu, et al. 82-channel multi-wavelength comb generation in a SOA fiber ring laser[J]. Optics & Laser Technology, 2010, 42(2): 285-288.
[8] CHENG Jian-qun, RUAN Shuang-chen. Tunable and switchable multi-wavelength Erbium-doped photonic crystal fiber ring laser incorporating a length of highly nonlinear photonic crystal fiber[J]. Optics Communications, 2011, 284(21): 5185-5188.
[9] Knight J C. Recent progress of photonic crystal fibers[C]// Optical Fiber Communication Conference. Baltimore(USA), 2000, 3: 98-100.
[10] GUO Yuan,RUAN Shuang-chen.Analysis on the dispersion properties of photonic crystal fiber with an air-hole defect core[J].Journal of Shenzhen University Science and Engineering,2010,27(4):386-390.
[11] Feng X H, Tam H Y, Wai P K A. Switchable multiwavelength erbium-doped fiber laser with a multimode fiber Bragg grating and photonic crystal fiber[J]. IEEE Photonics Technology Letters, 2006, 18(9): 1088-1090.
[12] Liu X M, Chung Y, Lin A, et al. Tunable and switchable multi-wavelength erbium-doped fiber laser with highly nonlinear photonic crystal fiber and polarization controllers[J]. Laser Physics Letters, 2008, 5(12): 904-907.
[13] MohdNasir M N, Yusoff Z, Al-Mansoori M H, et al. On the pre-amplified linear cavity multi-wavelength Brillioun-erbium fiber laser with low SBS threshold highly nonlinear photonic crystal fiber[J]. Laser Physics, 2009, 19(10): 2027-2030.
[14] CHENG Jian-qun, RUAN Shuang-chen, GUO Chun-yu, et al. Narrow linewidth Erbium-doped photonic crystal fiber laser[J]. Journal of Shenzhen University Science and Engineering,2011, 5(28): 400-404.
[15] Agrawal G P. Applications of Nonlinear Fiber Optics[M]. 3rd ed. New York: Springer-Verlag, 2002: 389-436.
[16] Zhang A, Demokan M. Broadband wavelength converter based on four-wave mixing in a highly nonlinear photonic crystal fiber[J]. Optics Letters, 2005, 30(18): 2375-2377.
[17] Marhic M, Kagi N, Chiang T, et al. Broadband fiber optical parametric amplifiers[J]. Optics Letters, 1996, 21(8): 573-575.
相似文献/References:
[1]郭媛,阮双琛.含空气小孔芯光子晶体光纤的色散特性研究[J].深圳大学学报理工版,2010,27(4):386.
GUO Yuan and RUAN Shuang-chen.Analysis on the dispersion properties of photonic crystal fiber with an air-hole defect core[J].Journal of Shenzhen University Science and Engineering,2010,27(No.6(471-580)):386.
[2]郭春雨,阮双琛,陈祖聪,等.18.4 W皮秒光纤激光器及其全光纤化超连续谱源[J].深圳大学学报理工版,2011,28(No.3(189-282)):218.
GUO Chun-yu,RUAN Shuang-chen,CHEN Zu-cong,et al.An all-fiber supercontinuum source pumped with a 18.4 W picosecond fiber laser[J].Journal of Shenzhen University Science and Engineering,2011,28(No.6(471-580)):218.
[3]阮双琛,闫培光,郭春雨,等.光子晶体光纤超连续谱光源[J].深圳大学学报理工版,2011,28(No.4(283-376)):295.
RUAN Shuang-chen,YAN Pei-guang,GUO Chun-yu,et al.Photonic crystal fiber supercontinuum source[J].Journal of Shenzhen University Science and Engineering,2011,28(No.6(471-580)):295.
[4]成建群,阮双琛,郭春雨,等.窄线宽掺铒光子晶体光纤激光器[J].深圳大学学报理工版,2011,28(No.5(377-470)):400.
CHENG Jian-qun,RUAN Shuang-chen,GUO Chun-yu,et al.Narrow linewidth Erbium-doped photonic crystal fiber laser[J].Journal of Shenzhen University Science and Engineering,2011,28(No.6(471-580)):400.
[5]房鸿,马瑞龙,成建群,等.纳秒脉冲泵浦光子晶体光纤产生超连续谱[J].深圳大学学报理工版,2011,28(No.6(471-564)):523.
FANG Hong,MA Rui-long,CHENG Jian-qun,et al.Supercontinuum generation in a photonic crystal fiber pumped by nanosecond pulses[J].Journal of Shenzhen University Science and Engineering,2011,28(No.6(471-580)):523.
[6]杜戈果,张灵聪,赵俊清,等.主动调Q掺铥双包层光纤激光器[J].深圳大学学报理工版,2012,29(No.5(377-470)):417.[doi:10.3724/SP.J.1249.2012.05417]
DU Ge-guo,ZHANG Ling-cong,ZHAO Jun-qing,et al.Actively Q-switched thulium-doped double-clad fiber laser[J].Journal of Shenzhen University Science and Engineering,2012,29(No.6(471-580)):417.[doi:10.3724/SP.J.1249.2012.05417]
[7]邵英,庄飚,钱美.双折射效应和去直流检测法的MOCT模型研究[J].深圳大学学报理工版,2013,30(No.3(221-330)):221.[doi:10.3724/SP.J.1249.2013.03221]
Shao Ying,Zhuang Biao,and Qian Mei.Modeling research of magneto-optic current transformer based on birefringence effect and deleting DC double-light detection[J].Journal of Shenzhen University Science and Engineering,2013,30(No.6(471-580)):221.[doi:10.3724/SP.J.1249.2013.03221]
[8]郭春雨,林怀钦,阮双琛,等.连续波泵浦的高功率全光纤化超连续谱光源[J].深圳大学学报理工版,2013,30(No.4(331-440)):423.[doi:10.3724/SP.J.1249.2013.04423]
Guo Chunyu,Lin Huaiqin,Ruan Shuangchen,et al.High-power all-fiber CW-pumped supercontinuum source[J].Journal of Shenzhen University Science and Engineering,2013,30(No.6(471-580)):423.[doi:10.3724/SP.J.1249.2013.04423]
[9]闫培光,李会权,张格霖,等.全固光子带隙光纤滤波1 126 nm掺镱光纤激光器[J].深圳大学学报理工版,2013,30(No.4(331-440)):432.[doi:10.3724/SP.J.1249.2013.04432]
Yan Peiguang,Li Huiquan,Zhang Gelin,et al.1 126 nm ytterbium-doped fiber laser combining all-solid photonic bandgap fiber[J].Journal of Shenzhen University Science and Engineering,2013,30(No.6(471-580)):432.[doi:10.3724/SP.J.1249.2013.04432]
[10]张敏,权润爱,苏红,等.光泵连续太赫兹波在生物成像中的应用研究(英文)[J].深圳大学学报理工版,2014,31(2):160.[doi:10.3724/SP.J.1249.2014.02160]
Zhang Min,Quan Runai,Su Hong,et al.Investigation of optically pumped continuous terahertz laser in biological imaging[J].Journal of Shenzhen University Science and Engineering,2014,31(No.6(471-580)):160.[doi:10.3724/SP.J.1249.2014.02160]