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基于长周期光纤光栅滤波器的掺铒光纤放大器理论和实验研究(英文) 被引量:4

Theoretical and Experimental Investigation on Erbium-Doped Fiber Amplifiers with Long-Period Fiber Grating Filters
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摘要 从理论和实验上研究了带有高频二氧化碳激光写入的低成本长周期光纤光栅(LPFG)掺铒光纤放大器(EDFA).结果表明,单波长和多波长EDFA的性能都可以通过在掺铒光纤(EDF)中插入长周期光纤光栅用作自发辐射噪声(ASE)滤波器或增益平坦器来提高性能.优化设计了带LPFG噪声滤波器的线放EDFA,与没有LPFG噪声滤波器相比,线放的噪声和小信号增益分别被减小和提高了约0.5dB和7dB。通过在多波长EDFA的EDF中插入一个LPFG增益平坦滤波器的方法,获得了1.5dB的增益平坦度,与没有LPFG平坦器相比,EDFA的噪声被减小了0.1dB,增益被提高了1dB. Erbium-doped fiber amplifiers (EDFAs) with low-cost long-period fiber gratings (LPFGs) fabricated by high-frequency CO2 laser pulses are investigated theoretically and experimentally. Results shows that Performances of EDFAs for both single-wavelength and multi-wavelength applications can be improved via inserting a LPFG into the erbium-doped fiber (EDF) as an ASE noise filter or a gain equalizer. Optimization of an in-line EDFA with a LPFG is also provided. The NF of such an in-line EDFA is improved by -0.5 dB and its small-signal gain is enhanced by 7 dB, compared with that without filtering. A multi-wavelength EDFA with a gain flatness of -1.5 dB is simply achieved via inserting a LPFG into the middle of an EDF as a gain equalizer, accompanying with a gain improvement of -1 dB and a NF reduction of -0.1 dB compared with the EDFA having a LPFG located after the EDF.
出处 《光子学报》 EI CAS CSCD 北大核心 2008年第4期695-700,共6页 Acta Photonica Sinica
关键词 长周期光纤光栅 自发辐射噪声滤波器 增益平坦器 掺铒光纤放大器 Long-period fiber grating(LPFG) ASE noise filters Gain equalizer Erbium-doped fiber amplifiers(EDFAs)
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  • 1刘丽辉,赵启大,张昊,王志,金龙,赵路明,陈少华,张伟刚,董孝义.双波长高灵敏度Bragg光纤光栅压力传感器[J].光子学报,2005,34(2):319-320. 被引量:3
  • 2Rao Y J,Wang Y P,Ran Z L, et al.Novel fiber-optic sensors based on long-period fiber gratings written by high-frequency CO2 laser pulses.J of Lightwave Technology,2003,21(5):1320~1325.
  • 3Liu H B,Liu H Y,Whitbread T,et al.A simple stain sensor using polymer fiber Bragg grating and long-period fiber grating.Advanced Sensor Systems and Application Ⅱ. Proc of SPIE,2004,5634:123~127.
  • 4Shu X W,Zhang L,Bennion I.Fabrication and characteristics of ultra-long-period fibre gratings.Optics Communications,2002,203(3-6):277~281.
  • 5Rao Y J,Wang Y P,Ran Z L,et al.Characteristics of novel long-period fiber gratings written by focused high-frequency CO2 laser pulses.Asia-Pacific Optical and Wireless Communications,2001, Proc of SPIE,2001,4581:327~333.
  • 6Trevor W M,Saeed P,Charles W H,et al.Generalized expression for the growth of long period gratings.IEEE Photonics Technology Letters,1998,10(10):1449~1451.
  • 7VENGSARKAR A M, LEMAIRE P J, JUDKINS J,et al.Long-period fiber gratings as band-rejection filters[J].J Lightware Technol, 1996, 14(1): 58-65.
  • 8WYSOCKI P, JUDKINS J, ESPINDOLA R, et al. Broad-band erbium-doped fiber amplifier flattened beyond 40nm using long-period grating filter[J].IEEE Photon Technol Lett, 1997, 9(10): 1343-1345.
  • 9PANDIT M, CHIANG K, CHEN Z, et al. Tunable long-period fiber gratings for EDFA gain and ASE equalization[J]. Microwave and Opt Technol Lett, 1999, 25(3): 181-184.
  • 10RAO Y J,WANG Y P,RAN Z L, et al. Characteristics of novel long-period fiber gratings written by focused high-frequency CO2 laser pulses[A].Proc Asia-Pacific Optical and Wireless Communications Conference[C].Beijing, China, 2001.327-333.

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