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首页> 外文期刊>Optics Letters >16 fs, 350 nJ pulses at 5 MHz repetition rate delivered by chirped pulse compression in fibers
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16 fs, 350 nJ pulses at 5 MHz repetition rate delivered by chirped pulse compression in fibers

机译:光纤中chi脉冲压缩以5 MHz的重复频率发送16 fs,350 nJ脉冲

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摘要

We demonstrate a simple approach for broadening and compression of intense pulses at megahertz repetition rates by self-phase modulation in nonlinear photonic crystal fibers. In order to avoid damage by self-focusing, we positively chirp the input pulses, which allows coupling of significantly more energy into the fiber, while maintaining the same spectral bandwidth and compression as compared to the Fourier-limited case at lower energy. Using a commercial long-cavity Ti:sapphire oscillator with 55 fs, 400 nJ pulses at 5 MHz, we generate 16 fs, 350 nJ pulses, which is a factor of 4 more energy than possible with unchirped input pulses. Self-phase-modulated spectra supporting 11 fs duration are also shown with 350 nJ pulse energy. Excellent stability is recorded over at least 1 h.
机译:我们展示了一种简单的方法,用于通过非线性光子晶体光纤中的自相位调制,以兆赫的重复频率来扩展和压缩强脉冲。为了避免由于自动聚焦而造成的损坏,我们积极地调低输入脉冲,这允许将更多的能量耦合到光纤中,同时与在较低能量下进行傅立叶限制的情况相比,保持相同的频谱带宽和压缩率。使用在5 MHz下具有55 fs,400 nJ脉冲的商用长腔Ti:蓝宝石振荡器,我们生成16 fs,350 nJ脉冲,这比未分拆输入脉冲时的能量高出4倍。还显示了支持11 fs持续时间的自相位调制频谱以及350 nJ脉冲能量。记录了至少1小时的出色稳定性。

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