首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Frequency-tunable supercontinuum generation in photonic-crystal fibers by femtosecond pulses of an optical parametric amplifier
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Frequency-tunable supercontinuum generation in photonic-crystal fibers by femtosecond pulses of an optical parametric amplifier

机译:通过光参量放大器的飞秒脉冲在光子晶体光纤中产生频率可调的超连续谱

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Supercontinuum emission is generated by the propagation of frequency-tunable femtosecond pulses of 1.1-1.5-Am radiation of an optical parametric amplifier through a photonic-crystal fiber. Nearly an octave's spectral broadening was observed when laser pulses with a duration of 80-100 fs and an energy of several nano-joules per pulse were coupled into a photonic-crystal fiber with a core radius of 1.5-3 mum. The spectral broadening of femtosecond pulses at 1.1-1.5 mum is shown to be much more efficient than the spectral broadening of femtosecond pulses of 800-nm Ti:sapphire laser radiation. The role of dispersion in spectral broadening and supercontinuum generation is discussed. In experiments on supercontinuum generation with an optical parametric amplifier, the influence of dispersion effects was reduced by decreasing the size of the fiber core, which allowed the efficiency of supercontinuum generation to be improved without increasing the laser intensity. (C) 2002 Optical Society of America. [References: 33]
机译:超连续谱发射是通过将光参量放大器的1.1-1.5-Am辐射的频率可调飞秒脉冲通过光子晶体光纤传播而产生的。当具有80-100 fs持续时间和每个脉冲几纳焦的能量的激光脉冲耦合到纤芯半径为1.5-3μm的光子晶体光纤中时,观察到几乎八度的光谱展宽。飞秒脉冲在1.1-1.5微米处的光谱展宽比800 nm Ti:蓝宝石激光辐射的飞秒脉冲的光谱展宽要有效得多。讨论了色散在光谱加宽和超连续谱产生中的作用。在使用光学参量放大器进行超连续谱产生的实验中,通过减小光纤纤芯的尺寸来减小色散效应的影响,从而可以在不增加激光强度的情况下提高超连续谱的产生效率。 (C)2002年美国眼镜学会。 [参考:33]

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