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首页> 外文期刊>Optoelectronics, IET >Compact and wide-band bismuth-based erbium-doped fibre amplifier based on two-stage and double-pass approaches
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Compact and wide-band bismuth-based erbium-doped fibre amplifier based on two-stage and double-pass approaches

机译:基于两级和双通方法的紧凑型宽带基于铋的掺fiber光纤放大器

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摘要

In this study, a wide-band erbium-doped fibre amplifier (EDFA) operating in both C- and L-band wavelength regions is demonstrated based on two-stage and double-pass approaches. The amplifier employs two pieces of 21 and 46 cm long bismuthbased EDFs (Bi-EDFs) optimised for C- and L-band operations, respectively, which are pumped by 1480 nm laser diode and its performances are investigated in both parallel and linear configurations. Wide-band operation is achieved in both configurations that covers from 1525 to 1620 nm. Compared with the linear Bi-EDFA, the parallel Bi-EDFA provides a higher attainable gain especially for small input signal. At input signal power of 230 dBm, the average gains of the parallel Bi-EDFA are obtained at approximately 20 dB with gain variation of u000b1;2.5 dB within the wavelength region from 1530 to 1605 nm. At the input signal power of 0 dBm, the average gains of approximately 10 dB with a gain variation of u000b1;2 dB within 1540 to 1620 nm region are obtained by both parallel and linear Bi-EDFAs. The noise figures for both configurations are maintained below 10 dB in the wavelength region from 1535 to 1620 nm. The noise figures are mainly because of spurious reflection in the cavity and high reflection of amplified spontaneous emission (ASE) from the end face.
机译:在这项研究中,基于两阶段和双通方法论证了在C波段和L波段波长区域均工作的宽带掺-光纤放大器(EDFA)。该放大器采用两片分别为C和L波段操作优化的21和46 cm长的铋基EDF(Bi-EDF),由1480 nm激光二极管泵浦,并在并联和线性配置下研究其性能。在覆盖1525至1620 nm的两种配置中均实现了宽带操作。与线性Bi-EDFA相比,并行Bi-EDFA提供了更高的增益,特别是对于小输入信号。在230 dBm的输入信号功率下,并行Bi-EDFA的平均增益约为20 dB,增益变化为u000b1;在1530至1605 nm的波长范围内为2.5 dB。在0 dBm的输入信号功率下,通过并行和线性Bi-EDFA均可获得1540至1620 nm区域内增益变化为u000b1; 2 dB的大约10 dB的平均增益。两种配置的噪声系数在1535至1620 nm的波长范围内均保持在10 dB以下。噪声系数主要是由于腔中的杂散反射和端面放大的自发发射(ASE)的高反射引起的。

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  • 来源
    《Optoelectronics, IET》 |2012年第3期|p.127-130|共4页
  • 作者

    Cheng X.S.;

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