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Volume 32 Issue 4
Apr.  2010
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Time-dependent characteristics of pulsed Er-doped superfluorescent fiber amplifiers

  • After solving time-dependent rate equations,the transient performance of superfluorescent fiber amplifiers wasstudied and the system's output characteristics and response to different modulation frequency were obtained.As long as modulationrate is within a certain range,high-peak-power pulses would be generated.For 1m Er-doped fiber pumped by 0.1W and the seedmodulated in nanosecond range with duty cycle of 50%,the amplifier outputs pulses with declining peaks,and stabilizes after about 200ns.Characteristics of the amplified signal could be controlled by monitoring the seed's pulse and spectral properties.The studysuggests possible means to produce high power pulses with ampeified spowtaneous emission fiber source whose mean wavelength andspectral width are manipulable,and has practical value in long-distance application within 1.5μm atmospheric window.
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    WANG Y,PO H.Dynamic characteristics of double-clad fiber amplifiers for high-power pulse amplification[J].IEEE Journal of Lightwave Technology,2003,21(10):2062-2070.
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    ZHAO S H,ZHAN Sh B,FU K,et al.Dynamic response of high-power Er3+/Yb3+ co-doped double-clad fiber amplifiers[J].Opto-electronics Engineering,2006,33(6):124-129(in Chinese).
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Time-dependent characteristics of pulsed Er-doped superfluorescent fiber amplifiers

    Corresponding author: GONG Ma-li, gongml@mail.tsinghua.edu.cn
  • 1. Center for Photonics and Electronics, Department of Precision Instruments, Tsinghua University, Beijing 100084, China

Abstract: After solving time-dependent rate equations,the transient performance of superfluorescent fiber amplifiers wasstudied and the system's output characteristics and response to different modulation frequency were obtained.As long as modulationrate is within a certain range,high-peak-power pulses would be generated.For 1m Er-doped fiber pumped by 0.1W and the seedmodulated in nanosecond range with duty cycle of 50%,the amplifier outputs pulses with declining peaks,and stabilizes after about 200ns.Characteristics of the amplified signal could be controlled by monitoring the seed's pulse and spectral properties.The studysuggests possible means to produce high power pulses with ampeified spowtaneous emission fiber source whose mean wavelength andspectral width are manipulable,and has practical value in long-distance application within 1.5μm atmospheric window.

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