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1.
A simple and stable loop consisting of a pair of concatenated electroabsorption modulators (EAMs) and 10 GHz clock recovery module is presented and demonstrated experimentally for simultaneous demultiplexing and clock recovery for OTDM networks. The 10 Gb/s demultiplexed signal and 10 GHz recovered clock are successfully implemented from 80 Gbit/s and 160 Gbit/s OTDM signals utilizing the loop. The loop based on EAM-PLL can provide excellent tolerance range (〉 5 dB) of the OSCR of the source laser, and the recovered clock signal exhibits low rms jitter over a dynamic input optical power range of 15 dB.  相似文献   
2.
A chirped fibre Bragg grating according to ITU-T suggested L-band (2nd channel λ1 = 1570.83 nm; 80th channel λ2 = 1603.57 nm) with more than 1800 ps/nm single channel dispersion compensation is presented in this paper, of which the cladding mode loss, the delay curve ripple and the power fluctuation of the reflected spectrum are less than 0.5 dB, 50 ps and 0.25 dB, respectively. With this new FBG as dispersion compensation device, a 2 × 10 Gb/s wavelength division multiplexing (WDM) L-band transmission of 600 km based on conventional single mode fibre (G.652 fibre) is performed without forward error correction. The bit error rate (BER) is less than 10-12 and the power penalties of the 2nd and 80th channel of L-band are 1.8 dB and 2.0 dB, respectively.  相似文献   
3.
A chirped fibre Bragg grating according to ITU-T suggested L-band (2nd channel $\lambda _{1}=1570.83$~nm; 80th channel $\lambda _{2}=1603.57$ nm) with more than 1800 ps/nm single channel dispersion compensation is presented in this paper, of which the cladding mode loss, the delay curve ripple and the power fluctuation of the reflected spectrum are less than 0.5 dB, 50 ps and 0.25 dB, respectively. With this new FBG as dispersion compensation device, a $2\times 10$ Gb/s wavelength division multiplexing (WDM) L-band transmission of 600 km based on conventional single mode fibre (G.652 fibre) is performed without forward error correction. The bit error rate (BER) is less than 10$^{ - 12}$ and the power penalties of the 2{nd} and 80{th} channel of L-band are 1.8~dB and 2.0~dB, respectively.  相似文献   
4.
研制出光敏偏振保持掺Er3+光纤,通过在这种光纤上紫外写入三个光纤光栅,形成对抽运激光高转化效率的谐振腔.在输出功率为23.617dBm、工作波长为976nm的激光抽运下,得到均值功率为9.20dBm、均值中心波长为1554.554nm的单波长激光输出.在室温下800min(约13.3h)的测量时间内,其输出功率的波动为±0.05dB,中心工作波长的波动为±0.0015nm. 关键词: 光纤激光器 3+光纤')" href="#">偏振保持掺Er3+光纤 光纤Bragg光栅  相似文献   
5.
基于速率方程理论建立了石英基掺Tm3+光纤激光器3H63H4抽运方式的理论模型,采用龙格-库塔 (Runge-Kutta) 法对该模型进行了数值分析,得出抽运光与激光功率在掺Tm3+光纤中的分布特性,并对Tm3+光纤长度、Tm3+的掺杂浓度等因素对掺Tm3+光纤激光器性能的影响进行 关键词: 3+光纤激光器')" href="#">石英基掺Tm3+光纤激光器 龙格-库塔法 抽运效率 掺杂浓度  相似文献   
6.
采用弹性力学理论和复变函数法导出了熊猫型保偏光纤应力双折射的近似解析表达式.利用有限元法数值分析了熊猫型保偏光纤的双折射特性,结果表明,与采用纤芯中心应力相比,采用芯区平均应力表示光纤的双折射较为精确,且结果与解析法导出的芯区中心应力双折射计算结果相比误差小于0.18%.在此基础上进一步分析了应力区失配对熊猫型保偏光纤的双折射所产生的影响,并通过实验测试证明了分析结果的正确性. 关键词: 偏振保持光纤 应力区失配 双折射 拍长  相似文献   
7.
利用偏振光椭圆率测量仪对分子束外延(MBE)法在Sapphire衬底上生长的Zn1-xMgxO薄膜的薄膜折射率和厚度进行了测试.结合ICP法测得的薄膜中的Mg组成量,经数值拟合,导出表征薄膜厚度与薄膜生长条件、薄膜折射率与薄膜中的Mg组成量之间关系的曲线,为MBE法在Sapphire衬底上生长Zn1-xMgxO薄膜时控制薄膜厚度以及在制作Zn1-xMgxO薄膜的波导时控制薄膜的折射率提供了理论依据.  相似文献   
8.
A new but simply implemented optical clock recovery scheme for optical time-division multiplexing (OTDM) systems based on stimulated BriUouin scattering (SBS) effect is presented and demonstrated experimentally. According to the unequal-amplitude even-multiplexed OTDM signals, the frame clock is extracted. In addition, the clock with multiple tributary rates is recovered from 160-Gb/s OTDM signal in simulation by utilizing the clock recovery module.  相似文献   
9.
非对称切趾对啁啾光纤光栅特性优化的分析   总被引:2,自引:0,他引:2  
基于对啁啾光纤布拉格光栅反射谱和时延曲线的分析,引入非对称切趾技术。综合时延曲线纹波和反射谱纹波平滑两方面考虑,将对称切趾技术的最佳切趾比例、左移和右移两种非对称切趾技术以及采用不同切趾函数对光纤光栅特性参量的优化效果进行了分析和比较。结果表明,与对称切趾相比,左移非对称切趾可避免对称切趾中为增大反射谱带宽而减小切趾比例使时延纹波增大的缺点,在保持反射谱纹波基本不变的前提下将时延曲线纹波降低了43.5%(与实验结果39.9%相吻合)。此外,与仅用汉明函数切趾相比,光纤光栅左端采用超高斯函数、右端采用汉明函数的非对称切趾方式使反射谱平坦部分纹波减小了89.3%,对应的时延曲线拟合误差减小了16.7%,获得了更好的优化效果。  相似文献   
10.
利用遗传算法优化线性啁啾光栅性能   总被引:3,自引:2,他引:1  
针对制作町用于40 Gb/s全光色散补偿的宽带线性啁啾光栅时出现带内群时延纹波波动较大等问题.提出了一种通过设计和改变切趾函数的参量来优化线性啁啾光栅的新方法.该方法实现简单.只需根据需要设计具有不同滚降特性的切趾函数,同时利用遗传箅法来优化切趾参量.结合传输矩阵法经过200代获得了低带内时延纹波的线性啁啾光栅.数值结果验证了采取非对称分段切趾法在保持反射谱宽和平坦性的同时可以抑制带内群时延纹波的优越性.利用该方法制作了反射谱工作带宽为1.06 nm、时延纹波不超过45.60 ps、可用于大容量密集波分复用系统(DWDM)色散补偿的线性啁啾光纤光栅.  相似文献   
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