共查询到17条相似文献,搜索用时 78 毫秒
1.
2.
为实现较大放大带宽,同时提高输出增益并保持较小的增益平坦度,设计了一种二阶拉曼光纤放大器,采用一个二阶泵浦和四个一阶泵浦对100路信号光进行分布式拉曼放大.首先对二阶拉曼耦合波方程进行数值求解,为进一步提高输出性能,利用粒子群优化算法对二阶拉曼光纤放大器的性能参数进行了优化,然后在相同泵浦参数配置下,对一阶拉曼光纤放大器和二阶拉曼光纤放大器进行对比,最后对二阶拉曼放大器输出增益的影响因素进行分析.通过Matlab仿真,在1 510~1 610 nm的增益带宽范围内所设计的二阶拉曼光纤放大器的平均输出增益为23.768 0 dB,最高输出增益为24.124 4 dB,同时增益平坦度为0.911 2 dB. 相似文献
3.
4.
5.
Design of broadband hybrid fiber amplifier based on particle swarm optimization algorithm北大核心CSCD 下载免费PDF全文
基于铒/镱共掺光纤放大器(erbium-ytterbium doped fiber amplifier, EYDFA)的理论模型和受激拉曼散射效应的分析理论,利用EYDFA和拉曼光纤放大器(Raman fiber amplifier, RFA)的增益谱互补特性,研究并设计了EYDFA与二阶多泵浦RFA相结合的混合放大器结构。为了得到高增益和低平坦度的混合放大器,引入了粒子群算法优化泵浦光波长和功率。仿真结果表明:在不使用增益均衡器的条件下,所设计的混合光纤放大器在输出端得到了近似相等的输出光功率,在90 nm的带宽范围内平均增益为38.78 dB,增益平坦度为1.1 dB,为混合放大器的设计和优化提供了参考。 相似文献
6.
双向抽运光纤拉曼放大器的优化设计算法 总被引:1,自引:0,他引:1
基于双向抽运拉曼放大器的功率耦合方程 ,采用遗传算法和级链的全局收敛的Broyden方法 ,提出一种优化设计不同形式双向抽运宽带光纤拉曼放大器的自动配置算法。该算法的特点是计算速度快、收敛性好、适应面广。通过对单光纤的分布式、具有不同增益要求的分立式以及不同周期的色散管理结构的分布式双向抽运拉曼放大器的设计表明 :在 10THz的增益带宽内 ,放大器的增益平坦度均优于± 0 .6dB ,表明了该算法的可行性。此方法为采用双向抽运技术的拉曼放大器及其相应的全拉曼光纤传输系统的设计提供了一个公共平台 相似文献
7.
宽带光纤拉曼放大器的优化设计与分析 总被引:11,自引:2,他引:9
基于拉曼放大器的功率耦合方程 ,采用遗传算法和全局收敛的布雷登方法 ,提出一种优化设计不同形式反向抽运宽带光纤拉曼放大器的自动配置算法。该算法的特点是计算速度快 ,收敛性好 ,适应面广。通过对具有不同增益要求的分立式、单光纤分布式以及不同结构的色散管理式宽带拉曼放大器设计表明 :在 10THz的增益带宽内 ,放大器的增益平坦度均优于± 0 .6dB ,表明了该算法的可行性。通过对由标准单模光纤和色散补偿光纤构成的组合放大单元与色散管理光纤级链组成的放大单元的比较 ,表明色散管理式拉曼放大器具有潜在的应用价值。 相似文献
8.
9.
10.
双泵浦光子晶体光纤参量放大研究 总被引:6,自引:5,他引:1
利用光子晶体光纤在不同零色散波长附近具有不同色散的特性,研究了在零色散波长为780 nm和1550 nm附近的双泵浦光子晶体光纤参量放大过程.在780 nm附近,讨论了零色散波长变化对双泵浦光子晶体光纤参量放大的影响.数值模拟结果表明:当零色散波长发生微小的变化时,信号增益谱带宽会发生很大的变化.当两泵浦光之间的波长差值减小时,零色散波长的变化对参量放大的影响在很大程度上可以得到抑制,但是增益带宽会有一定的减小.依据这一原理,在1550 nm附近设计光子晶体光纤中的色散平坦光纤参量放大,在5 m长的光子晶体光纤中,当峰值功率为10 W时,得到了增益为65 dB,带宽达到420 nm且极为平坦的增益谱. 相似文献
11.
A gain and gain-flatness improved L-band dual-pass Raman fiber amplifier (RFA) utilizing a photonic crystal fiber (PCF) as gain medium is demonstrated. By introducing complementary gain spectra of typical forward and backward pumping single-pass RFA using the same PCF, we finally achieve average net gain level of 22.5 dB with a ±0.8 dB flattening gain in 20-nm bandwidth from 1595 nm to 1615 nm, which is rare in RFAs with only one single pump and no flattening filter. Compared with the single-pass pump configurations, gain level, flatness and bandwidth are greatly improved by using the dual-pass amplification configuration. The limitation of this configuration caused by multi-path interference (MPI) noise and stimulated Brillouin scattering (SBS) is also discussed. 相似文献
12.
13.
In this paper, two stage hybrid optical amplifier (HOA) composed of a single erbium doped fiber amplifier and Raman amplifier is proposed for dense wavelength division multiplexed (DWDM) system and investigate the impact of reduced channel spacing. The performance has been evaluated in the term of gain, gain flatness and noise figure. Also, using gain equalization technique, hybrid optical amplifier that has a gain flatness of 3 dB, and a noise figure of less than 7.4 dB is observed. 相似文献
14.
J. D. Ania-Castañón A. A. Pustovskikh S. M. Kobtsev S. K. Turitsyn 《Optical and Quantum Electronics》2007,39(3):213-220
We propose a simple and efficient approach to the design of 3-wavelength backward-pumped Raman amplifiers with increased gain
flatness over a wide spectral band. Three different methods dealing with the optimization of one or two different simple parameters
are studied. Various examples are provided for illustration, and the dependence of both amplifier gain and gain flatness with
pump power is shown. Gain flatness in the spectral range of 1,520–1,595 nm of about 1 dB for a 7.5 dB gain and of 1.8 dB for
a 13.5 dB gain is demonstrated using only three pumps with wavelengths within the 1,420–1,480 nm interval. 相似文献
15.
设计了一种新颖的、低开关功率的全光开关. 将高非线性光子晶体光纤和双向抽运掺饵光纤放大器引入Sagnac环形镜内,破坏了环形镜的对称性,利用交叉相位调制作用使反向传输的两路信号光产生非线性相移,从而实现开关效应. 理论分析表明:开关功率与放大器的增益倍数和光子晶体光纤非线性系数的积成反比,在实验中所得开关功率约40 mW,消光比约为15.9 dB,并且信号光透过率随脉冲控制光峰值功率呈余弦变化,实验结果与理论分析相吻合.
关键词:
全光开关
高非线性光子晶体光纤
环形镜
交叉相位调制 相似文献
16.
N. Md. Yusoff M. H. Abu Bakar S. J. Sheih F. R. Mahamd Adikan M. A. Mahdi 《Laser Physics》2010,20(8):1747-1751
Erbium-doped fiber amplifier with flat gain over 30 nm bandwidth is demonstrated using flexible selective band methods. The
band optical amplifier was designed to cater 44 wavelength division multiplexing channels which were separated into bands
of 4 nm. Without using any gain flattening filter, the gain of optical amplifier was maintained at 19 dB with a maximum gain
variation of less than 1.6 dB even though the input signal power was varied from −19 to −6 dBm. The amplifier was able to
maintain 1 dB gain flatness with 83% chance for any selective bands of 4 nm within the wavelength range from 1530 to 1565
nm. This feature is very attractive to support band optical networks. 相似文献