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Beam delivery and pulse compression to sub-50 fs of a modelocked thin disk laser in a gas-filled Kagome-type HC-PCF fiber

机译:在充满气体的Kagome型HC-PCF光纤中,光束传递和脉冲压缩到50ock以下的锁模薄盘激光器

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摘要

We present two experiments confirming that hypocycloid Kagome-type hollow-core photonic crystal fibers (HC-PCFs) are excellent candidates for beam delivery of MW peak powers and pulse compression down to the sub-50 fs regime. We demonstrate temporal pulse compression of a 1030-nm Yb:YAG thin disk laser providing 860 fs, 1.9 µJ pulses at 3.9 MHz. Using a single-pass grating pulse compressor, we obtained a pulse duration of 48 fs (FWHM), a spectral bandwidth of 58 nm, and an average output power of 4.2 W with an overall power efficiency into the final polarized compressed pulse of 56%. The pulse energy was 1.1 µJ. This corresponds to a peak power of more than 10 MW and a compression factor of 18 taking into account the exact temporal pulse profile measured with a SHG FROG. The compressed pulses were close to the transform limit of 44 fs. Moreover, we present transmission of up to 97 µJ pulses at 10.5 ps through 10-cm long fiber, corresponding to more than twice the critical peak power for self-focusing in silica.
机译:我们目前进行的两个实验证实,摆线式Kagome型空心光子晶体光纤(HC-PCFs)是MW峰值功率的光束传输和低至50 fs以下脉冲压缩的极好候选。我们演示了在3.9 MHz频率下提供860 fs,1.9 µJ脉冲的1030 nm Yb:YAG薄盘激光器的时间脉冲压缩。使用单通光栅脉冲压缩器,我们获得了48 fs(FWHM)的脉冲持续时间,58 nm的光谱带宽和4.2 W的平均输出功率,最终极化压缩脉冲的总功率效率为56% 。脉冲能量为1.1 µJ。考虑到使用SHG FROG测量的确切时间脉冲轮廓,这相当于超过10 MW的峰值功率和18的压缩系数。压缩后的脉冲接近于44 fs的变换极限。此外,我们提出通过10厘米长的光纤以10.5 ps的速度传输高达97 µJ脉冲,相当于在二氧化硅中自聚焦的临界峰值功率的两倍以上。

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