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Photonic crystal fibers for supercontinuum generation pumped by a gain-switched CW fiber laser

机译:增益切换连续波光纤激光器泵浦的用于产生超连续谱的光子晶体光纤

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Supercontinuum generation in photonics crystal fibers (PCFs) pumped by CW lasers yields high spectral power density and average power. However, such systems require very high pump power and long nonlinear fibers. By on/off modulating the pump diodes of the fiber laser, the relaxation oscillations of the laser can be exploited to enhance the broadening process. The physics behind the supercontinuum generation is investigated by sweeping the fiber length, the zero dispersion wavelength, and the fiber nonlinearity. We show that by applying gain-switching a high average output power of up to 30 W can be maintained and the spectral width can be improved by 90%. The zero dispersion wavelength should be close to but below the pump wavelength to achieve the most visible light. By increasing the nonlinearity the fiber length can be reduced from 100 m to 25 m and the efficiency of visible light generation is improved by more than 200%.
机译:由连续波激光器泵浦的光子晶体光纤(PCF)中产生超连续谱可产生高光谱功率密度和平均功率。但是,这样的系统需要很高的泵浦功率和较长的非线性光纤。通过开/关调制光纤激光器的泵浦二极管,可以利用激光器的弛豫振荡来增强展宽过程。通过扫描光纤长度,零色散波长和光纤非线性来研究超连续谱产生的物理原理。我们表明,通过应用增益开关,可以维持高达30 W的高平均输出功率,并且频谱宽度可以提高90%。零色散波长应接近但低于泵浦波长,以实现最可见的光。通过增加非线性度,可以将光纤长度从100 m减少到25 m,并将可见光生成效率提高200%以上。

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