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基于半导体光放大器光纤环形腔的光数据包复制器的噪声特性研究 总被引:1,自引:0,他引:1
利用半导体光放大器(SOA)光纤环形腔实现重复周期准确、信号脉冲功率较大且几乎一致的光数据包复制.提出了一种注入非循环直流辅助光的方法,既有效抑制了放大自发辐射(ASE)噪声,又避免了环形腔内谐振.利用简化模型,从理论上对复制器输出噪声与信噪比(SNR)进行分析及仿真,得到复制器输出信噪比与复制次数的变化关系,并详细分析了注入直流辅助光功率及衰减系数对输出信噪比的影响.实验测得数据与理论结果一致.进一步对实验进行优化,在输出端口利用半导体光放大器对输出信号进行功率均衡,获得数据包信噪比下降小于3 dB且脉冲光功率几乎一致的15次以上复制. 相似文献
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基于半导体光放大器的四波混频型全光波长转换器 总被引:3,自引:1,他引:3
本文报道了基于自行研制的半导体光放大器(SOA)的四波混频(FWM)型全光波长转换,采用环型腔掺铒光纤激光器(EDFL)作为泵浦源,实现了转换波长的连续可调。并就波长转换间距、光放大器的小信号增益和输入泵浦光功率对转换效率的影响进行了理论与实验分析,结果表明高的SOA增益和较大的输入泵浦光功率须利于转换效率的提高。 相似文献
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提出了一种新的基于半导体光放大器非线性偏振旋转效应的全光采样方法,利用速率方程对全光采样的理论机理进行了阐述.借助该速率方程模型对采样器的输入偏振角、偏振控制器的附加相移和偏振合束器的偏振方向等参数进行了优化设计.计算结果表明,采样器传输曲线具有较好的线性工作范围,能够实现模拟光信号的高速全光采样,且其输入泵浦光功率小于1mW.由于该全光采样的工作原理与全光波长转换类似,而目前的全光波长转换工作速率可达320Gbps,因此该全光采样的采样速率可望达到上百GS/s. 相似文献
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传统的基于半导体放大器的全光异或逻辑门,由于受SOA中长载流子寿命引起码型效应的影响,其工作速率的提升受到了限制。提出了一种基于MZI和体材料SOA中交叉增益调制的全光逻辑异或门的工作速率提升的实现方案。通过增加MZI两臂上SOA的长度和提高入射直流探测光功率,增强了直流探测光和数据光在较长的SOA中的相互作用,以减小超高速工作状态下SOA中的载流子寿命,提升体材料SOA的工作速率,实现超高速XOR逻辑功能。研究表明,入射直流探测光功率的提升、SOA长度的增加、数据光峰值功率的提高及数据光脉宽的减少,可使XOR逻辑门的输出信号质量得到明显的提升,使全光异或逻辑门的工作速率可望达到1 Tb/s。 相似文献
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In this paper,we review the recent progress in the optical signal processing based on the nonlinearity of semiconductor optical amplifiers (SOAs).The four important optical signal processing functional blocks in optical switching are presented,i.e.,optical wavelength conversion,optical regeneration,optical logic,and optical format conversion.We present a brief overview of optical wavelength conversion,and focus on various schemes to suppress the slow gain recovery of the SOA and improve the operating speed of the SOA-based optical switches.Optical regeneration including re-amplification,re-shaping and re-timing is also presented.Optical clock recovery that is essential for optical regeneration is reviewed.We also report the recent advances in optical logic and optical format conversion,respectively.After reviewing the four important optical signal processing functional blocks,the review concludes with the future research directions and photonic integration. 相似文献
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提出了一种基于半导体光放大器(SOA)的组播实验方案,首先利用谱展宽和谱切片得到多波长脉冲源,将其作为探测光并与信号光共同注入到SOA中,利用SOA的交叉增益调制(XGM)效应,信号光与每一个波长的脉冲光发生作用,在SOA输出端通过可调光带通滤波器(TBDF)得到每一波长的变换后信号,实现光信号的组播过程。在实验中,10 Gb/s的归零(RZ)码作为信号光,而由多波长脉冲源产生的4波长脉冲光作为探测光,在探测光波长附近分别得到了与编码信号光逻辑取"非"的信号。 相似文献
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In this paper,several applications in all-optical signal processing based on a semiconductor optical amplifier (SOA) and variable delayed interferometers (DIs) have been experimentally demonstrated.Wavelength converter based on a nonlinear polarization switch (NPS) and a DI is proposed and presented for the wavelength conversion of nonretum-to-zero (NRZ) signals.An alloptical nonretum-to-zero to return-to-zero (NRZ-to-RZ)format converter with tunable duty cycles is achieved by the DI with variable delays.The 40 Gb/s reconfigurable optical OR/NOR gate in a single SOA,followed a tunable optical bandpass filter (OBF) and a DI,optical 2R regeneration using an SOA-DI are investigated.It is found that this combinative realization of filters has been endowed with great flexibility and quality for 40 Gb/s optical logic and 2R regeneration. 相似文献
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Microwave photonic filters have been characterized by low loss,light weight,broad bandwidth,good tunability,and immunity to electromagnetic interference,and these filters can overcome inherent electronic limitations.Fiber-based filters are inherently compatible with fiber-optic microwave systems and can provide connectivity with built-in signal conditioning.This review paper presents developments of microwave photonic filters based on semiconductor optical amplifier in the last few years.Challenges in system implementation for practical application are also discussed. 相似文献
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采用国产半导体器件,组建了半导体光纤环形腔激光器(FRSLs)的实验装置及相应的测试系统,系统地研究了FRSLs的输出和调谐特性.结果表明,已实现高速调制情况下的动态单纵模调谐,并获得波长调谐范围大于36nm的稳定光脉冲输出.确立了FRSLs的阈值特性、输出功率等物理参量与振荡波长之间的关系,提出通过控制分光比来优化和兼顾FRSLs的调谐范围及输出功率.实验结果较好地与理论模拟结果相吻合,为进一步改善FRSLs的性能指标提供了实验依据.同时,这些分析与结论对于相关结构类型的激光器设计也具有一定的参考价值. 相似文献