为了提高频谱资源的利用率,缓解因色度色散和偏振模色散引起的符号间干扰,引入一种新的光调制技术。通过将正交频分复用技术(Orthogonal Frequency Division Multiplexing,OFDM)应用于光纤通信中,构造出高速率、大容量、低成本的光传输...为了提高频谱资源的利用率,缓解因色度色散和偏振模色散引起的符号间干扰,引入一种新的光调制技术。通过将正交频分复用技术(Orthogonal Frequency Division Multiplexing,OFDM)应用于光纤通信中,构造出高速率、大容量、低成本的光传输系统。该方法与传统的光通信技术相比,具有更强的系统抗色散能力。利用OptiSystem软件构建仿真系统,分析了光正交频分复用(Optical Orthogonal Frequency Division Multiplexing,O-OFDM)技术的抗色散性能。根据仿真结果可得出,光正交频分复用技术在高速超长距离的光纤通信中,具有很好的应用前景。展开更多
We propose and demonstrate a novel single-longitudinal-mode(SLM) erbium-doped fiber laser(EDFL) capable of operating at fixed-wavelength lasing mode with a tunable range more than 54 nm, an ultra-narrow linewidth of 4...We propose and demonstrate a novel single-longitudinal-mode(SLM) erbium-doped fiber laser(EDFL) capable of operating at fixed-wavelength lasing mode with a tunable range more than 54 nm, an ultra-narrow linewidth of 473 Hz and an ultra-high optical signal-to-noise ratio(OSNR) more than 72 dB, or operating at wavelength-swept mode with tunable sweep rate of 10—200 Hz and a sweep range more than 50 nm. The excellent features mainly benefit from a triple-ring subring cavity constructed by three optical couplers nested one another and a fiber Fabry-Pérot tunable filter which can be driven by a constant voltage or a periodic sweep voltage for fixed or wavelength-swept operation, respectively. The proposed EDFL has potential applications in high-resolution spectroscopy and fiber optic sensing.展开更多
文摘为了提高频谱资源的利用率,缓解因色度色散和偏振模色散引起的符号间干扰,引入一种新的光调制技术。通过将正交频分复用技术(Orthogonal Frequency Division Multiplexing,OFDM)应用于光纤通信中,构造出高速率、大容量、低成本的光传输系统。该方法与传统的光通信技术相比,具有更强的系统抗色散能力。利用OptiSystem软件构建仿真系统,分析了光正交频分复用(Optical Orthogonal Frequency Division Multiplexing,O-OFDM)技术的抗色散性能。根据仿真结果可得出,光正交频分复用技术在高速超长距离的光纤通信中,具有很好的应用前景。
基金supported by the Natural Science Foundation of Hebei Province(No.F2016201023)the Technology Foundation for Selected Overseas Chinese Scholar of Ministry of Human Resources and Social Security of China(No.CG2015003006)the Advanced Talents Program of Hebei Educational Committee(No.GCC2014020)
文摘We propose and demonstrate a novel single-longitudinal-mode(SLM) erbium-doped fiber laser(EDFL) capable of operating at fixed-wavelength lasing mode with a tunable range more than 54 nm, an ultra-narrow linewidth of 473 Hz and an ultra-high optical signal-to-noise ratio(OSNR) more than 72 dB, or operating at wavelength-swept mode with tunable sweep rate of 10—200 Hz and a sweep range more than 50 nm. The excellent features mainly benefit from a triple-ring subring cavity constructed by three optical couplers nested one another and a fiber Fabry-Pérot tunable filter which can be driven by a constant voltage or a periodic sweep voltage for fixed or wavelength-swept operation, respectively. The proposed EDFL has potential applications in high-resolution spectroscopy and fiber optic sensing.