首页> 外文期刊>Electronics Letters >Generation of 10 GHz, 200 fs Fourier-transform-limited optical pulse train from modelocked semiconductor laser at 1.55 /spl mu/m by pulse compression using dispersion-flattened fibre with normal group-velocity dispersion
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Generation of 10 GHz, 200 fs Fourier-transform-limited optical pulse train from modelocked semiconductor laser at 1.55 /spl mu/m by pulse compression using dispersion-flattened fibre with normal group-velocity dispersion

机译:使用具有正常群速度色散的色散平坦光纤,通过脉冲压缩,以1.55 / spl mu / m的模数对接半导体激光器产生10 GHz,200 fs傅里叶变换限制的光脉冲序列

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摘要

The authors report the generation of 10 GHz, 200 fs Fourier-transform-limited optical pulses at 1.55 /spl mu/m. The 3 dB spectral width of 1.7 ps optical pulses generated from a modelocked semiconductor laser is broadened from 1.8 to 22 nm, while the pulses travel through a dispersion-flattened fibre with a small normal group-velocity dispersion. Linear up-chirp is induced in the spectral broadening process, and the up-chirped pulses are compressed down to 200 fs by using a proper amount of anomalous dispersion of optical fibres. The compressed pulses are almost Fourier-transform limited, and the compression factor is as high as 8.5.
机译:作者报告了以1.55 / spl mu / m的频率产生10 GHz,200 fs傅里叶变换限制的光脉冲。由锁模半导体激光器产生的1.7 ps光脉冲的3 dB光谱宽度从1.8 nm扩大到22 nm,而脉冲则通过色散平坦的光纤传播,该光纤的法向群速度色散较小。在频谱展宽过程中会引起线性上chi,并且通过使用适量的光纤异常色散将上chi的脉冲压缩到200 fs。压缩脉冲几乎受到傅立叶变换的限制,并且压缩系数高达8.5。

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