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Kagome-fiber-based pulse compression of mid-infrared picosecond pulses from a Ho:YLF amplifier

机译:Ho:YLF放大器基于Kagome纤维的中红外皮秒脉冲压缩

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摘要

Over the last decade, the development of ultrafast laser pulses in the mid-infrared (MIR) region has led to important breakthroughs in attosecond science and strong-field physics. However, as most such broadband MIR laser sources are near-IR pumped, the generation of high-intensity, long-wavelength MIR pulses is still a challenge, especially starting from picosecond pulses. Here we report, both experimentally and numerically, nonlinear pulse compression of sub-millijoule picosecond pulses down to sub-300 fs at 2050 nm wavelength in gas-filled Kagome-type hollow-core photonic crystal fibers for driving MIR optical parametric amplifiers. The pump laser is comprised of a compact fiber laser-seeded 2 μm chirped pulse amplification system based on a Ho:YLF crystal at 1 kHz repetition rate. Spectral broadening is studied for different experimental conditions with variations of gas pressure and incident pulse energies. The spectrally broadened 1.8 ps pulses with a Fourier-limited duration of 250 fs are compressed using an external prism-based compressor down to 285 fs and output energy of 125 μJ.
机译:在过去的十年中,中红外(MIR)区域超快激光脉冲的发展导致了原子秒科学和强场物理学的重要突破。但是,由于大多数此类宽带MIR激光源都是近红外泵浦,因此高强度,长波长MIR脉冲的产生仍然是一个挑战,尤其是从皮秒脉冲开始。在这里,我们在实验和数值上报告了在气体填充的Kagome型空心光子晶体光纤中,用于驱动MIR光学参量放大器的,在2050 nm波长处的亚毫焦级皮秒脉冲的非线性脉冲压缩,直到300fs以下。泵浦激光器由一个以Ho:YLF晶体为基础,以1 kHz重复频率进行播种的紧凑型光纤激光器播种的2μmpulse脉冲放大系统组成。在不同的实验条件下,随着气压和入射脉冲能量的变化,对光谱展宽进行了研究。使用外部基于棱镜的压缩器将光谱展宽的1.8 ps脉冲具有250 fs的傅里叶限制,压缩至285 fs,输出能量为125μJ。

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