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All-optical automatic gain control in loop erbium-doped fiber amplifiers

机译:环路掺fiber光纤放大器中的全光自动增益控制

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Abstract: All-optical automatic gain control in loop erbium-doped fiber amplifiers is investigated using single Bragg reflecting fiber grating. Reflecting back part of the filtered amplifier spontaneous emission to the loop mirror generates a lasing signal. The lasing wavelength is selected at 1525 nm, which is outside the amplifier bandwidth, to avoid interference between the signal and laser oscillation, and away from the amplifier surveillance wavelength at 1510 nm. This technique avoids tapping part of the amplifier output signal for generating the lasing signal. The loop amplifier has 20 nm flat gain spectrum with peak to peak gain variation less than 0.5 dB. Adjusting the lasing threshold using variable optical attenuator placed before the fiber Bragg grating controls the achieved gain clamping. An input signal consists from 8 channels picked up on the ITU frequency grid in the range from 1540 nm to 1560 nm and two laser diode pumps at 980 nm each with 60 mW pumping power are used in the experiments. The power excursion when adding or dropping any number of the 8 channels with $MIN@25 dBm input power per channel is less than 0.3 dB. The transient response time of the surviving channel(s) is measured to less than 200 $mu@s.!6
机译:摘要:研究了单布拉格反射光纤光栅在掺光纤放大器中的全光自动增益控制。将滤波后的放大器的自发部分反射回环路镜会产生一个激射信号。激光波长选择在放大器带宽之外的1525 nm处,以避免信号和激光振荡之间的干扰,并远离1510 nm的放大器监视波长。该技术避免了抽头放大器输出信号的一部分以产生激射信号。环路放大器具有20 nm平坦增益谱,其峰峰值增益变化小于0.5 dB。在光纤布拉格光栅控制已实现的增益钳制之前,使用可变光衰减器来调整激射阈值。输入信号由在ITU频率网格上从1540 nm至1560 nm范围内拾取的8个通道组成,实验中使用了两个980 nm的激光二极管泵浦,每个泵浦功率为60 mW。当以每通道$ MIN @ 25 dBm的输入功率增减8个通道中的任意数量时,功率偏移小于0.3 dB。幸存通道的瞬态响应时间测得小于200 $mu@s.!6

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