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Few-Cycle High Energy Pulse Compression at MHz Repetition Rate

机译:以MHz重复频率进行的几周期高能量脉冲压缩

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We demonstrate a simple method for spectral broadening and compression of laser pulses at megahertz repetition rates by self-phase modulation in a large mode area (LMA) fiber. In order to avoid the currently limiting factor of damage by self-focusing, we positively chirp the input pulse, 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 chirped pulse Ti:Sa oscillator (Femtolasers, Femtosource XL) with 55fs, 400nJ pulses at 5MHz and an LMA fiber with 25um core diameter, we generate 16fs, 350nJ pulses, which is a factor of 4 more energy than possible with unchirped input pulses. Good stability has been measured over at least 1 hour for the chirped case and unchirped case Furthermore, with a 5μm core diameter LMA fiber we generated compressed pulses with 6fs and 18nJ output energy. This would allow a carrier-to-envelope phase stabilization of the laser system by external self-stabilization via acoustic difference-frequency modulation. The compact size and its simplicity makes the combination of a chirped pulse oscillator with chirped-fiber-broadening an attractive option for ultrafast spectroscopy at MHz repetition rate.
机译:我们演示了一种通过自相调制在大模式区域(LMA)光纤中以兆赫兹重复频率对激光脉冲进行光谱加宽和压缩的简单方法。为了避免当前因自动聚焦而造成损害的限制因素,我们积极调频输入脉冲,这使得与光纤中傅立叶限制的情况相比,可以将更多的能量耦合到光纤中,同时保持相同的频谱带宽和压缩率。较低的能量。使用具有55fs,频率为5MHz的400nJ脉冲,直径为25um的LMA光纤的商用chi脉冲Ti:Sa振荡器(Femtolasers,Femtosource XL),我们可产生16fs,350nJ脉冲,这比未hir绕时的能量高出4倍。输入脉冲。对于the声和未声的情况,在至少1小时内已测得良好的稳定性。此外,使用5μm纤芯直径的LMA光纤,我们产生了具有6fs和18nJ输出能量的压缩脉冲。这将允许通过声学差频调制通过外部自稳定来实现激光系统的载波至包络相位稳定。紧凑的尺寸及其简单性使a脉冲振荡器与chi光纤扩展相结合成为了以MHz重复频率进行超快光谱分析的诱人选择。

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