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将多毫焦耳皮秒脉冲压缩至接近太瓦量级的少周期脉冲。

Post-compression of multi-millijoule picosecond pulses to few-cycles approaching the terawatt regime.

作者信息

Rajhans Supriya, Escoto Esmerando, Khodakovskiy Nikita, Velpula Praveen K, Farace Bonaventura, Grosse-Wortmann Uwe, Shalloo Rob J, Arnold Cord L, Põder Kristjan, Osterhoff Jens, Leemans Wim P, Hartl Ingmar, Heyl Christoph M

出版信息

Opt Lett. 2023 Sep 15;48(18):4753-4756. doi: 10.1364/OL.498042.

Abstract

Advancing ultrafast high-repetition-rate lasers to shortest pulse durations comprising only a few optical cycles while pushing their energy into the multi-millijoule regime opens a route toward terawatt-class peak powers at unprecedented average power. We explore this route via efficient post-compression of high-energy 1.2 ps pulses from an ytterbium InnoSlab laser to 9.6 fs duration using gas-filled multi-pass cells (MPCs) at a repetition rate of 1 kHz. Employing dual-stage compression with a second MPC stage supporting a close-to-octave-spanning bandwidth enabled by dispersion-matched dielectric mirrors, a record compression factor of 125 is reached at 70% overall efficiency, delivering 6.7 mJ pulses with a peak power of ∼0.3 TW. Moreover, we show that post-compression can improve the temporal contrast at multi-picosecond delay by at least one order of magnitude. Our results demonstrate efficient conversion of multi-millijoule picosecond lasers to high-peak-power few-cycle sources, prospectively opening up new parameter regimes for laser plasma physics, high energy physics, biomedicine, and attosecond science.

摘要

将超快高重复率激光器推进到仅包含几个光学周期的最短脉冲持续时间,同时将其能量提升至数毫焦量级,这为实现前所未有的平均功率下的太瓦级峰值功率开辟了一条途径。我们通过使用充气多程池(MPC),以1 kHz的重复频率将掺镱InnoSlab激光器输出的高能1.2 ps脉冲高效后压缩至9.6 fs的持续时间,来探索这条途径。采用双级压缩,第二级MPC通过色散匹配介质镜支持近倍频程跨度的带宽,在总效率为70%时达到了125的创纪录压缩因子,输出6.7 mJ的脉冲,峰值功率约为0.3 TW。此外,我们表明后压缩可以将多皮秒延迟下的时间对比度提高至少一个数量级。我们的结果证明了将数毫焦皮秒激光器高效转换为高峰值功率的少周期光源,有望为激光等离子体物理、高能物理、生物医学和阿秒科学开辟新的参数范围。

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