[1] 顾宏灿, 姚高飞, 黄俊斌, 等. 基于相位掩模板的常规光纤制备弱反射光栅[J]. 激光技术, 2022, 46(2): 149-154.GU H C, YAO G F, HUANG J B, et al. Fabrication of weak fiber Bragg grating with conventional fiber based on phase mask[J]. Laser Technology, 2022, 46(2): 149-154(in Chinese).
[2] 李虎, 郭子龙, 杨文婷, 等. 空芯光纤多模干涉型光纤液位传感技术研究[J]. 激光技术, 2022, 46(1): 120-124.LI H, GUO Z L, YANG W T, et al. Research of the liquid level sensing technology based on a hollow fiber multimode interference optical fiber[J]. Laser Technology, 2022, 46(1): 120-124(in Chin-ese).
[3] 刘强, 毕卫红, 付兴虎, 等. 基于少模光纤长周期光栅叠栅的折射率传感特性[J]. 光子学报, 2018, 47(1): 0106001.LIU Q, BI W H, FU X H, et al. Refractive index sensing characteristic of superimposed long period grating on few mode fiber[J]. Acta Photonica Sinca, 2018, 47(1): 0106001(in Chinese).
[4] 訾慧, 薛正群, 王凌华, 等. 1550 nm宽光谱超辐射发光二极管的研制[J]. 红外与激光工程, 2018, 47(4): 0420001.ZI H, XUE Zh Q, WANG L H, et al. Study of wide spectrum superluminescent diode at 1550 nm[J]. Infrared and Laser Engineering, 2018, 47(4): 0420001(in Chinese).
[5] 李吴皓, 王定理, 李中坤, 等. 大功率低偏振度超辐射发光二极管的研制[J]. 激光与红外, 2022, 52(2): 217-222.LI W H, WANG D L, LI Zh K, et al. Study of high power low polarization superluminescent diodes[J]. Laser & Infrared, 2022, 52(2): 217-222(in Chinese).
[6] 周帅, 许瑨, 田坤, 等. 1310 nm大功率高偏振度量子阱超辐射发光二极管[J]. 半导体光电, 2021, 42(4): 483-487.ZHOU Sh, XU J, TIAN K, et al. 1310 nm quantum-well superluminescent diode with high power and high degree of polarization[J]. Semiconductor Optoelectronics, 2021, 42(4): 483-487(in Chin-ese).
[7] 习聪玲. S+C+L超宽带光源的研究[J]. 激光技术, 2012, 36(6): 822-824.XI C L. Study on S+C+L ultra broadband light source[J]. Laser Technology, 2012, 36(6): 822-824(in Chinese).
[8] WANG X L, HUANG W C. Band selective C- or L-band ASE source using unpumped erbium-doped fiber with an optical switch[J]. Optics & Laser Technology, 2013, 48: 263-266.
[9] CHENG X S, AHMAD H, HARUN S W. Broadband ASE source using bismuth-based erbium-doped fibers in double-pass setup[J]. Microwave and Optical Technology Letters, 2010, 52(7): 1636-1638.
[10] CHEN Y E, ZHOU Y K, YANG D W, et al. A temperature-insensitive amplified spontaneous emission broadband source based on er-doped fiber[J]. Chinese Physics Letters, 2018, 35(4): 53-55.
[11] PETROV A B, GUMENYUK R, ALIMBEKOV M S, et al. Broadband superluminescent erbium source with multiwave pumping[J]. Optics Communications, 2018, 413: 304-309.
[12] WU X, RUAN Sh Ch, LIU Ch X. High-stable and broadband erbium-doped superfluorescent photonic crystal fiber source[J]. Optical Engineering, 2012, 51(9): 095005.
[13] 郭小冬, 乔学光, 贾振安, 等. 光纤光栅传感器用的高功率宽带光源[J]. 传感器技术, 2005, 24(1): 75-77.GUO X D, QIAO X G, JIA Zh A, et al. High-power broadband light source for fiber Bragg grating sensors[J]. Journal of Transducer Technology, 2005, 24(1): 75-77(in Chinese).
[14] 曹帆, 寿国础, 胡怡红, 等. 频谱分割DWDM无源光网络系统串扰实验研究[J]. 光电子·激光, 2009, 20(8): 1033-1036.CAO F, SHOU G Ch, HU Y H, et al. Experimental research on crosstalk in a spectrum-spliced DWDM passive optical network[J]. Journal of Optoelectronics·Laser, 2009, 20(8): 1033-1036(in Chinese).
[15] 李春生, 颜玢玢, 王大朋, 等. 基于超宽带铋铒共掺光纤光源的光纤光栅传感[J]. 中国激光, 2017, 44(1): 0110003.LI Ch Sh, YAN B B, WANG D P, et al. Fiber Bragg grating sensing by ultra-broadband light source based on bismuth-erbium co-doped fiber[J]. Chinese Journal of Lasers, 2017, 44(1): 0110003(in Chinese).
[16] 张桂才, 马骏, 马林, 等. 宽带光源光谱不对称性对光纤陀螺性能的影响[J]. 中国惯性技术学报, 2017, 25(5): 670-675.ZHANG G C, MA J, MA L. Effect of spectrum asymmetry of broadband light source on performance of fiber optic gyro[J]. Journal of Chinese Inertial Technology, 2017, 25(5): 670-675(in Chinese).
[17] 钱景仁, 程旭, 朱冰. 掺铒光纤超荧光宽带光源的实验研究[J]. 中国激光, 1998, 25(11): 989-992.QIAN J R, CHENG X, ZHU B. The experimental research of a broadband erbium-doped fiber superfluorescence source[J]. Chinese Journal of Lasers, 1998, 25(11): 989-992(in Chinese).
[18] 王秀琳. 高效率两级结构掺铒光纤超荧光宽带光源研究[J]. 集美大学学报(自然科学版), 2006, 11(2): 173-176.WANG X L. Studies of a high efficiency two-stage erbium-doped superfluorescent fiber broadband light source[J]. Journal of Jimei University (Natural Science Edition), 2006, 11(2): 173-176(in Ch-inese).
[19] 何巍, 祝连庆, 张荫民, 等. 基于单泵浦源结构的高平坦C+L波段掺Er3+光纤宽带光源[J]. 光电子·激光, 2013, 24(12): 2308-2313.HE W, ZHU L Q, ZHANG Y M, et al. A high flatting C+L band Er3+-doped fiber broadband source with the single pump structure[J]. Journal of Optoelectronics ·Laser, 2013, 24(12): 2308-2313(in Chinese).
[20] DESURVIRE E, SIMPSON J R. Amplification of spontaneous emission in erbium-doped single-mode fibers[J]. Journal of Lightwave Technology, 1989, 7(5): 835-845.