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Gain-clamped double-pass S-band erbium-doped fiber amplifier

机译:增益钳位双通S波段掺do光纤放大器

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摘要

Gain clamping in double-pass short-wavelength band erbium-doped fiber amplifier (S-band EDFA) is demonstrated. It uses a fiber Bragg grating, which operates in conventional-band to form an oscillating laser in the cavity using an erbium-doped fiber (EDF) gain at around 1530 nm. This new technique has shown a good gain clamping effect with gain variation of less than 1.0 dB from -40 to -14 dBm input signal powers for 1500 nm signal. The gain can be controlled within 18 to 20 dB by varying a variable optical attenuator from 0 to 8 dB. Compared with an unclamped amplifier, the noise figures for small signals are slightly improved due to the suppression of amplified spontaneous emission (ASE). However, the noise figure level is still considerably high due to the double-pass scheme and unoptimised splicing between a depressed cladding EDF and a standard single mode fiber. The advantage of this gain clamped amplifier is that the oscillating light operates at wavelength outside S-band region, which prevent the wavelength division multiplexed system from being disturbed.
机译:演示了在双通短波长掺光纤放大器(S波段EDFA)中的增益钳位。它使用光纤布拉格光栅,该光纤布拉格光栅以常规频带工作,并利用1530 nm左右的掺fiber光纤(EDF)增益在空腔中形成振荡激光器。这项新技术显示了良好的增益钳位效果,对于1500 nm信号,从-40到-14 dBm的输入信号功率,增益变化小于1.0 dB。通过将可变光衰减器从0改变为8 dB,可以将增益控制在18到20 dB之内。与非钳位放大器相比,由于抑制了自发发射(ASE),小信号的噪声系数有所改善。但是,由于双通方案以及凹陷的包层EDF与标准单模光纤之间的未优化拼接,噪声系数水平仍然很高。这种增益钳位放大器的优点在于,振荡光在S波段区域以外的波长工作,从而防止波分复用系统受到干扰。

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