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1.
利用啁啾光纤光栅进行色散补偿的研究   总被引:1,自引:0,他引:1  
魏道平 《光学技术》2000,26(1):76-78
分析了由于光纤的色散引起的脉冲展宽,并介绍了啁啾布拉格光纤光栅进行色散补偿的基本原理。2-5Gb/s、100km 色散补偿的实验结果表明,利用啁啾光纤光栅进行色散补偿是一种切实可行的色散补偿方案。  相似文献   

2.
提出一种随深度变化的色散补偿方法,用以提升频域光学相干层析成像系统的纵向分辨率。该方法利用迭代算法计算出不同成像深度处的色散补偿系数,通过数值计算,得到色散补偿系数与成像深度的关系表达式,计算出各成像深度处的色散补偿系数,利用这些色散补偿系数消除相应深度位置处信号的高阶色散相位,从而有针对性地对系统中参考臂与样品臂的色散失配进行补偿,消除色散的展宽效应。理论推导和实验结果表明,光学相干层析成像系统中,随深度变化的色散补偿方法对各成像深度位置处的信号,包括成像深度较深位置处的弱信号,均可以进行有效的色散补偿,进而得到更多的样品结构信息。  相似文献   

3.
偏振模色散矢量的研究   总被引:6,自引:0,他引:6       下载免费PDF全文
吴重庆  付松年  董晖  刘海涛 《物理学报》2002,51(11):2542-2546
研究了无损光纤的密勒矩阵,进而得出了偏振模色散矢量的解析表达式、主偏振态对应的斯托克斯矢量的解析表达式,以及高阶偏振模色散矢量的解析表达式.这些解析表达式是由光纤参数决定的.讨论了局部偏振模色散矢量与整体偏振模色散矢量的关系,讨论了利用偏振模色散矢量进行偏振模色散补偿的原理.引入了偏振模色散补偿元件的偏振模色散补偿矢量C,具体计算了正规的非圆光波导类的补偿元件的C.从理论上证明了仅仅利用一个正规的非圆光波导类的补偿元件,例如一根保偏光纤或是一个双折射晶体,是不能实现偏振模色散补偿 关键词: 偏振模色散 密勒矩阵 色散补偿 主偏振态斯托克斯矢量  相似文献   

4.
自锁模Cr4+∶YAG激光器的色散补偿研究   总被引:8,自引:5,他引:3  
宋丽军  裴为华  宋晏蓉  周国生 《光子学报》2003,32(10):1163-1165
从棱镜对补偿色散的原理出发,介绍了Cr4+∶ YAG锁模激光器中色散补偿的特点,发现熔融石英作为色散补偿元件,不仅可以完全补偿二阶色散,而且三阶色散也得到了一定的补偿,并得到了脉冲宽度最小为65 fs,中心波长为1520 nm,重复频率为120 MHz的脉冲序列.  相似文献   

5.
通信系统中色散补偿光纤的研究   总被引:1,自引:0,他引:1  
对五包层色散补偿光纤进行了研究,分析了各个参量对色散补偿光纤性能的影响,发现色散补偿光纤只有在一定范围的拉丝芯径内,以牺牲负色散数值为代价才能获得较大的负色散斜率。在1550nm处获得了不大于150ps/(nm·km)的负的总色散和负色散斜率的色散补偿光纤。采用在光纤拉丝时旋转预制棒的工艺减小了光纤的偏振模色散,并采用化学汽相沉积(MCVD)光纤生产工艺,研制出了性能较好的色散补偿光纤。  相似文献   

6.
自锁模Cr^4+:YAG激光器的色散补偿研究   总被引:1,自引:0,他引:1  
从棱镜对补偿色散的原理出发,介绍了Cr^4 :YAG锁模激光器中色散补偿的特点,发现熔融石英作为色散补偿元件,不仅可以完全补偿二阶色散,而且三阶色散也得到了一定的补偿,并得到了脉冲宽度最小为65fs,中心波长为1520nm,重复频率为120MHz的脉冲序列。  相似文献   

7.
采用光线追迹法对含有马丁内兹型展宽器的CPA系统的各阶色散进行了系统的理论研究,提出了引入适当负三阶色散量以补偿五阶色散的总体色散的混合补偿方法.该方法能够获得比采用仅补偿二、三阶色散的逐阶色散补偿法更接近傅里叶变换极限的超短脉冲. 关键词: 啁啾脉冲放大 马丁内兹型展宽器 色散补偿  相似文献   

8.
光子晶体光纤色散补偿特性的数值研究   总被引:7,自引:0,他引:7       下载免费PDF全文
李曙光  刘晓东  侯蓝田 《物理学报》2004,53(6):1880-1886
利用矢量有效折射率方法对光子晶体光纤(PCF)的色散补偿特性进行了数值模拟,研究发现通过调节光子晶体光纤包层的空气穴节距或空气穴大小可以灵活地设计光子晶体光纤的色散系数D、色散斜率Dslope以及κ值,可以设计在波长1.55μm附近具有较大绝对值的正常色散和负色散斜率的色散补偿光子晶体光纤,使光通信中的普通单模光纤(G.652)或非零色散位移光纤(G.655)在1.55μm低损耗窗口得到较好的色散补偿.数值模拟和分析表明色散补偿光子晶体光纤的研制具有很大的发展潜力. 关键词: 光子晶体光纤 色散 色散斜率 色散补偿  相似文献   

9.
基于偏振模色散矢量的偏振模色散补偿方案的研究   总被引:1,自引:0,他引:1  
在研究局部偏振模色散矢量与整体偏振模色散矢量关系的基础上,从理论上得到完全补偿偏振模色散的关系,结论是至少利用两段保偏光纤才能完全补偿。提出了基于偏振模色散矢量的偏振模色散补偿方案和调节控制的算法原理及改进的方向。这些结果对正确进行偏振模色散补偿是很有帮助的。  相似文献   

10.
利用Optisystem软件,对40Gb/s单信道光纤传输系统中基于RZ调制格式下的色散补偿进行仿真,比较了前置补偿和后置补偿的色散补偿性能,并提出了一种对称补偿,仿真结果表明对称补偿的色散补偿性能最好,最后分析了入纤光功率和光纤光栅的带宽对色散补偿系统的影响,均取得了比较理想的结果.  相似文献   

11.
The common and traditional method for optical dispersion compensation is concatenating the transmitting optical fiber by a compensating optical fiber having a high-negative dispersion coefficient.In this Letter,we take the opposite direction and show how an optical fiber with a high-positive dispersion coefficient is used for dispersion compensation.Our optical dispersion compensating structure is the optical implementation of an iterative algorithm in signal processing.The proposed dispersion compensating system is constructed by cascading a number of compensating sub-systems,and its compensation capability is improved by increasing the number of embedded sub-systems.We also show that the compensation capability is a trade-off between the transmission length and bandwidth.We use the simulation results to validate the performance of the introduced dispersion compensating module.Photonic crystal fibers with high-positive dispersion coefficients can be used for constructing the proposed optical dispersion compensating module.  相似文献   

12.
Optical pulse compression using high-order dispersion compensation is proposed and theoretically analyzed. Firstly, the required dispersion profile for the high-order dispersion compensation is derived, according to the linear chirp and the nonlinear chirp of a phase-modulated continuous-wave (CW) laser source. With the use of the high-order dispersion compensation, such as the combination compensation of the second order dispersion (SOD) and the fourth order dispersion (FOD), an efficient pulse compression having a less time-bandwidth product and a greater peak power is realized. A sampled fiber Bragg grating (FBG) with both the SOD and the FOD is then designed using the equivalent chirp and the reconstruction algorithm. Finally, in the numerical simulation an optical pulse with a time-bandwidth product of 0.79 is generated via high-order dispersion compensation that is performed by using the sampled FBG.  相似文献   

13.
Simulations for data formats Return to Zero (RZ), Non-Return to Zero (NRZ), RZ-Soliton, Duobinary and their subcategories have been done with and without ideal dispersion compensation for optical communication systems. The results show that, in general, dispersion compensation improves timing jitter. RZ-Rectangular pulses show the smallest value of jitter without compensation. It has been observed that the RZ-Raised Cosine, and Soliton, give minimum jitter after ideal compensation. It has been reported that the BER performance of optical communication system using Duobinary data format is 10−8 and 10−37 before and after dispersion compensation, respectively. Further the comparative study shows that the timing jitter is the lowest in case of RZ-Soliton (0.0127 ns) after dispersion compensation and 0.0135 ns for RZ-Rectangular data format before dispersion compensation.  相似文献   

14.
用于频域光学相干层析成像的深度分辨色散补偿方法   总被引:4,自引:2,他引:2  
黄炳杰  步鹏  王向朝  南楠 《光学学报》2012,32(2):217002-212
提出一种深度分辨的色散补偿方法,用于增强频域光学相干层析成像的纵向分辨率。将频域光学相干层析成像采集的干涉谱信号傅里叶变换到空域,获取对应不同深度的干涉谱条纹相位,通过对其进行调整实现对被测样品不同深度处的色散的精确补偿。避免传统方法中采用统一色散系数进行色散补偿所带来的过补偿与欠补偿误差,可以有效消除色散引起的频域光学相干层析成像系统点扩展函数的展宽和扭曲。模拟和实验结果表明,基于深度分辨的色散补偿方法在样品的全深度探测范围内可以达到较佳的补偿效果,可有效提高光学相干层析成像系统的纵向分辨率。  相似文献   

15.
We study an electronic compensator (EC) as a receiver for a 100-Gb/s polarization division multiplexing coherent optical orthogonal frequency division multiplexing (PDM-CO-OFDM) system without optical dispersion compensation.EC,including electrical dispersion compensation (EDC),least squares channel estimation and compensation (LSCEC),and phase compensation (PC),is used to compensate for chromatic dispersion (CD),phase noise,polarization mode dispersion (PMD),and channel impairments,respectively.Simulations show that EC is highly effective in compensating for those impairments and that the performance is close to the theoretical limitation of optical signal-to-noise rate (OSNR),CD,and PMD.Its robustness against those transmission impairments and fiber nonlinearity are also systematically studied.  相似文献   

16.
1 Introduction  Despitethegreatsuccessofwavelengthdivisionmultiplexed (WDM )systemsinachievinghigh capacitytransmission ,thereremainsinterestinexploringthecapabilitiesofhighdatarateinsinglechannelsystems.Thepropagationofchirpedpulsesinopticalfibersisofgr…  相似文献   

17.
毛昕蓉  张建华  赵谦 《应用光学》2015,36(6):888-892
介绍色散补偿光纤DCF及动态啁啾光纤光栅FBG的补偿技术并比较其优缺点,提出在传统光传输系统末端加入动态FBG的方案,通过Optisystem仿真软件搭建40 Gbit/s的光传输系统,用FBG仿真光传输400 km的Q值为3.745,误码率为7.419 42e-5,用DCF静态混合补偿和静态与动态相结合的补偿方案分别仿真并比较两种方案传输相同距离的Q值和误码率的大小,证明提出的静态加动态的方案提高了光传输性能。  相似文献   

18.
This article explores specific dispersion compensation properties of an OCT set-up based on temporal correlation performed by using a diffraction grating. The linear dispersion term introduced by a glass plate with a thickness of up to 9 mm has been experimentally compensated optically through the position adjustment of the output imaging lens and for a light bandwidth of 100 nm. The dispersion compensation principle is described theoretically and results obtained experimentally are compared successfully with simulated ones. System limitations are discussed, especially regarding compensation of second orders of dispersion. Perspectives are given to achieve such a dispersion compensation.  相似文献   

19.
By numerical simulations, we show that picosecond Gaussian optical pulses with a precise optimal frequency chirping can transmit stably in full-dispersion compensation optical fiber links, with not only second- but also third-order dispersion compensation, using dispersion shift fibers with opposite dispersion sign. The optimal pre-chirp is determined principally by the second-order dispersion scheme and scarcely affected by third-order dispersion scheme. It demonstrates that, to a high bit rate transmission system, the pre-chirping technology and higher-order dispersion compensation are two very efficient measures in improving performance of system.  相似文献   

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