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Design of a sinc-sampled fiber Bragg grating fabricated in high birefringence fiber 被引量:1

Design of a sinc-sampled fiber Bragg grating fabricated in high birefringence fiber
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摘要 In this paper we design a new kind of sinc-sampled fiber Bragg grating which is fabricated in high birefringence fiber (HBF). The sampled grating has two sets of reflection spectra along two perpendicular polarization directions. The grating's channel number can be doubled approximately by designing the refractive index difference between the fast and slow axes of the fiber, which enhances the utilization ratio and reduces the claim for photosensitivity of the fiber. The group delay characteristics are theoretically studied and side-lobes are depressed by apodization as well to get the optimized spectra. The results show that the comb-like spectra of the grating have promising applications in both multi-wavelength polarized fiber lasers and fiber sensing networks.
出处 《Optoelectronics Letters》 EI 2011年第5期367-370,共4页 光电子快报(英文版)
基金 supported by the Natural Science Funds of Shandong Province (No.Q2007G03) the Independent Innovation Fund of Shandong University (No.2010TS014) the Open Fund of Key Laboratory of Information Photonics and Optical Communications (Beijing University of Posts and Telecommunications), Ministry of Education
关键词 BIREFRINGENCE Fiber Bragg gratings Fiber lasers Group delay Optical sensors Refractive index 光纤布拉格光栅 高双折射光纤 设计 光纤制造 采样 取样光纤光栅 反射光谱 偏振方向
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参考文献13

  • 1ZHU Qi-guang and CHEN Ying, Journal of'Optoelectronics · Laser 21, 821 (2010). (in Chinese).
  • 2ZHU Hong-liang, XU Xiao-dong, WANG Huan, KONG Duan-hua, LIANG Song, WANG Bao-jun, ZHAO Ling-juan and WANG Wei, Journal of Optoelectronics · Laser 21, 1280 (2010). (in Chinese).
  • 3Ricardo Feced, Michalis N. Zervas and Miguel A. Muriel, 1EEE J. Quantum Electron. 35, 1105 (1999).
  • 4Yusuke Nasu and Shinji Yamashita, J. Lightwave Technol. 23, 1808 (2005).
  • 5Fang Deng, Zhen-hong Yu, Zhi-peng Gao and Lin-mei Mu, Chinese Journal of Quantum Electronics 25, 630 (2008). (in Chinese).
  • 6I Navruz and A. Altuncu, Optimization Based Synthesis Methods to Design Multi-Channel Sampled Fiber Bragg Gratings with Phase-Shift, Electrical and Electronics Engineering, Bursa, Turkey, 11213 (2009).
  • 7LIAO Yan-biao, Fiber Optics, Beijing, Tsinghua University Press 67 (2003). (in Chinese).
  • 8A. Yariv, IEEE J. Quantum Electron. QE-9, 919 (1973).
  • 9T. Erdogan, J. Lightwave Technol. 15, 1277 (1997).
  • 10M. Ibsen, M. K. Durkin, M. J. Cole and R.I. Laming, Photon. Technol. Lett. 10, 842 (1998).

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  • 1王思劼,刘俭辉,胡智勇,葛春风,李世忱.基于高双折射光纤环形镜L-band EDFA增益平坦实验[J].光电子.激光,2004,15(9):1053-1057. 被引量:9
  • 2宋明,谢芳,冯其波.可调谐光滤波器的研究进展[J].光学仪器,2006,28(5):81-85. 被引量:5
  • 3杜华杰,于永森,郑杰,曹英晖,郑伟,张玉书.啁啾光纤光栅EDFA增益平坦滤波器的设计与制作[J].光电子.激光,2007,18(6):645-648. 被引量:5
  • 4ZHANG Wei-yi, NING Ji-ping, HAN Qun.Stimulation and experiment of erbium/yt terbium co-doped double-clad fiber amplifier[J].Microwave and Optical Techno logy Letters,2012,54(5):1332-1335.
  • 5Yusoff N M,Abu Bakar M H,Sheih S J,et al.Gain-flattened erbiu m-doped fib er amplifier with flexible selective band for optical networks[J].Laser Physic s,2010,20(8):1747-1751.
  • 6Yamada M, Kanamori T, Terunuma Y, et al.Fluoride-based er bium-do ped fiber am plifier with inherently flat gain spectrum[J].IEEE Photon.Technol.Lett.,1996, 8(7):882-884.
  • 7YANG Wei,LIU Ying,XIAO Li-feng.Wavelength-tunable erb ium-dop ed fiber ring laser employing an acousto-optic filter[J].Lightwave Technology Journal of, 2010,28(1):118-122.
  • 8LIU Kai-xian.Technlolgy for EDFA gain flattening based on long period fiber grating[J].Advanced Materials Research,2012,18(6):6065-6063.
  • 9Frazao O,Silva R M,Santos J L.High-birefr ingent fiber loop mirror sensors with an output port probe[J].IEEE.Photonics Techologh Letters,2011,23(2):103-105.
  • 10Ricardo Manuel Silva,Azam Layeghi,Mohammad Ism ai l Zibaii,et al.Theoretic al and experimental results of high-birefringent fiber loop mirror with an outp ut port probe[J].Journal of Lightwave Technology,2012,30(8):1032-1036.

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