该光纤环形腔激光器工作在连续波状态下。
Thus, a fiber ring laser gyroscope (FRLG) operating in continuous wave was demonstrated.
本文提出一种基于光纤环形腔半导体激光器(FRSL)的波长转换方案,阐述了其结构模型和工作原理。
The paper presents a new scheme of wavelength conversion, which based on fiber ring semiconductor lasers (FRSL). Its configuration and operating principle are demonstrated.
本文给出了在环形光纤外腔光反馈之下半导体激光器频偏特性的小信号分析理论。
In this paper a complete small signal analysis for semiconductor laser frequency chirping in the presence of optical fiber ring feedback is presented.
提出了一种基于光纤环形腔半导体激光器的全光波长转换方案。
A scheme of all-optical wavelength conversion based on fiber ring semiconductor lasers is raised.
我们从速率方程和传播方程出发,对环形腔结构的掺铒光纤激光器的输出特性进行了详细的理论分析。
Derived from rate equations and propagation equations, the output characteristic of Er3 + -doped fiber ring laser is studied in details.
我们理论和实验上分析了该新型滤波器透射特性,并在此基础上通过调节PC实现了双波长和各自单波长输出的环形腔光纤激光器。
We theoretically and experimentally analyze the transmission traits of novel Sagnac loop, and realize dual-wavelength and single wavelength output switchable ring fiber laser through adjusting PCs.
通过数值模拟比较细致地分析研究了影响可调谐环形腔掺铒光纤激光器输出特性的几个主要因素,用以指导可调谐掺铒光纤激光器的实验研究工作。
By the numerical simulation, the factors of influence on the characteristics of the EDFRL are analyzed and studied in detail. And the results are used to guide the experimental studies on the EDFRL.
实验表明,采用非线性放大复合环形镜构成复合腔光纤激光器,有可能获得高重复频率的锁模脉冲。
It is suggested that using a NACLM as a passive mode locking element, generation of ultrashort pulses of very high repetition rate is promising with a fiber laser.
本文的主要内容是对可调谐环形腔掺铒光纤激光器工作特性的数值模拟计算和实验研究。
The main contents of the thesis include the numerical simulation and experimental studies on tunable EDFRL.
通过对文献中报道的环形腔结构光纤激光器输出的分析,指出了其存在的问题,并提出了减小其输出背景噪声的改进方案。
By analyzing the output spectra of former configurations, a problem was indicated, and an improved loop structure to eliminate the background noise was proposed.
通过对文献中报道的环形腔结构光纤激光器输出的分析,指出了其存在的问题,并提出了减小其输出背景噪声的改进方案。
By analyzing the output spectra of former configurations, a problem was indicated, and an improved loop structure to eliminate the background noise was proposed.
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