An optical time-domain differentiation scheme is proposed and demonstrated based on the intensive differential group delay in a high birefringence fibre waveguide. Results show that the differentiation waveforms agree...An optical time-domain differentiation scheme is proposed and demonstrated based on the intensive differential group delay in a high birefringence fibre waveguide. Results show that the differentiation waveforms agree well with the mathematically calculated derivatives. Both error and efficiency will increase when the birefringence fibre becomes longer, and the error rises up more quickly while the efficiency approaches to a maximum of ~0.25. By using a 1-m birefringence fibre a lower error of ~0.26% is obtained with an efficiency of 1% for the first-order differentiation of 10-ps Gaussian optical pulses, and the high-order optical differentiation up to 4th order is achieved with an error less than 3%. Due to its compact structure being easy to integrate and cascade into photonic circuits, our scheme has great potential for ultrafast signal processing.展开更多
为了改善存在差分群时延(Differential group delay,DGD)情况下模式复用系统的解复用性能,采用基于恒模算法(Constant modulus algorithm,CMA)的MIMO均衡器对2×2模式复用系统的输出信号进行了解复用,利用CMA更新迭代MIMO均衡器的...为了改善存在差分群时延(Differential group delay,DGD)情况下模式复用系统的解复用性能,采用基于恒模算法(Constant modulus algorithm,CMA)的MIMO均衡器对2×2模式复用系统的输出信号进行了解复用,利用CMA更新迭代MIMO均衡器的抽头系数。仿真结果表明,该算法能够成功实现带有串扰和时延的信号解复用,并且具有很好的收敛性。在系统信噪比大于18.25 d B时,系统误码率均能达到10-5量级,满足通信系统的要求。展开更多
Based on uniform fiber Bragg grating bonded with a magnetostrictive rod in the non-uniform magnetic field,a novel PMD compensation technique is proposed.This all-fiber PMD compensation technology is cost-effective and...Based on uniform fiber Bragg grating bonded with a magnetostrictive rod in the non-uniform magnetic field,a novel PMD compensation technique is proposed.This all-fiber PMD compensation technology is cost-effective and flexible in designing the differential group delay profile.展开更多
基金supported by the National Natural Science Foundation of China (Grant Nos. 60907027 and 60877057)the Specialized Research Fund for the Doctoral Program of Higher Education of Ministry of Education of China (Grant No. 20090009120035)
文摘An optical time-domain differentiation scheme is proposed and demonstrated based on the intensive differential group delay in a high birefringence fibre waveguide. Results show that the differentiation waveforms agree well with the mathematically calculated derivatives. Both error and efficiency will increase when the birefringence fibre becomes longer, and the error rises up more quickly while the efficiency approaches to a maximum of ~0.25. By using a 1-m birefringence fibre a lower error of ~0.26% is obtained with an efficiency of 1% for the first-order differentiation of 10-ps Gaussian optical pulses, and the high-order optical differentiation up to 4th order is achieved with an error less than 3%. Due to its compact structure being easy to integrate and cascade into photonic circuits, our scheme has great potential for ultrafast signal processing.
文摘为了改善存在差分群时延(Differential group delay,DGD)情况下模式复用系统的解复用性能,采用基于恒模算法(Constant modulus algorithm,CMA)的MIMO均衡器对2×2模式复用系统的输出信号进行了解复用,利用CMA更新迭代MIMO均衡器的抽头系数。仿真结果表明,该算法能够成功实现带有串扰和时延的信号解复用,并且具有很好的收敛性。在系统信噪比大于18.25 d B时,系统误码率均能达到10-5量级,满足通信系统的要求。
文摘Based on uniform fiber Bragg grating bonded with a magnetostrictive rod in the non-uniform magnetic field,a novel PMD compensation technique is proposed.This all-fiber PMD compensation technology is cost-effective and flexible in designing the differential group delay profile.