After the coupling equations of co-pumping,counter-pumping and bidirectional-pumping distributed Raman amplifiers(DRAs) are theoretically analyzed,the power distributions of these three DRAs are acquired with numerica...After the coupling equations of co-pumping,counter-pumping and bidirectional-pumping distributed Raman amplifiers(DRAs) are theoretically analyzed,the power distributions of these three DRAs are acquired with numerical analysis.The performance factors,such as net gain(NG),amplified spontaneous emissions(ASE) noise,double Rayleigh backscattering(DRB) noise,noise figure(NF) and optical signal noise ratio(OSNR),are discussed in depth.It can be found that the NGs of the three DRAs are almost equal.The counter-pumping scheme will induce higher ASE.And the co-pumping DRA has greater DRB noise,but its NF and OSNR are both better than the others'.Furthermore,the relations between signal power and NG,NF,OSNR are also investigated.It is shown that the NF and OSNR of the co-pumping scheme are superior to those of the other two schemes at small input signal power.The above conclusions can play a very important role in guiding the optimum design of DRA.展开更多
基金Supported by the National Natural Science Foundation of China(Crant No.60907041)the Ph.D Program Foundation of Chongqing University of Posts and Telecommunications(Grant No.A2007-47)
文摘报道了一种利用频率为几千赫兹的高频 CO2激光脉冲的热冲击效应制作长周期光纤光栅的新技术。实验中,作者首次发现这种新型的长周期光纤光栅具有一些独特的光学特性,比如弯曲特性和横向负载特性等,这主要是因为用高频 CO2激光脉冲写成的长周期光纤光栅的横截面折射率分布不对称所致。基于这种新型长周期光纤光栅,设计了一种用于减小掺铒光纤放大器噪声系数的 ASE 噪声滤波器和平坦掺铒光纤放大器增益谱的增益均衡器,此外,还利用这种新型长周期光纤光栅独特的弯曲和压力特性,研究设计了两种用于动态平坦掺铒光纤放大器增益谱的动态增益均衡器。
基金supported by the National Natural Science Foundation of China (Nos.60907041,61003256 and 61071117)the Natural Science Foundation of CQ CSTC (No.2010BB2409)
文摘After the coupling equations of co-pumping,counter-pumping and bidirectional-pumping distributed Raman amplifiers(DRAs) are theoretically analyzed,the power distributions of these three DRAs are acquired with numerical analysis.The performance factors,such as net gain(NG),amplified spontaneous emissions(ASE) noise,double Rayleigh backscattering(DRB) noise,noise figure(NF) and optical signal noise ratio(OSNR),are discussed in depth.It can be found that the NGs of the three DRAs are almost equal.The counter-pumping scheme will induce higher ASE.And the co-pumping DRA has greater DRB noise,but its NF and OSNR are both better than the others'.Furthermore,the relations between signal power and NG,NF,OSNR are also investigated.It is shown that the NF and OSNR of the co-pumping scheme are superior to those of the other two schemes at small input signal power.The above conclusions can play a very important role in guiding the optimum design of DRA.