Wu Yi, Zhou Fangjie, Larsen Esben W, Zhuang Fengjiang, Yin Yanchun, Chang Zenghu
CREOL and Department of Physics, University of Central Florida, Orlando, Florida, 32816, USA.
Quantum Optics and Laser Science Group, Blackett Laboratory, Imperial College London, London, SW7 2BW, UK.
Sci Rep. 2020 May 8;10(1):7775. doi: 10.1038/s41598-020-64330-8.
Lasers capable of generating attosecond X-ray pulses in the water window (282 to 533 eV) through high-order harmonic generation are normally based on inefficient, multi-stage optical parametric amplifiers or optical parametric chirped pulse amplifiers pumped by femtosecond or picosecond lasers. Here we report a very efficient single amplification stage laser based on traditional chirped pulse amplification capable of producing 4 mJ, near-transform limited 44 fs (<6 cycles), 1 kHz pulses centered at 2.5 μm. The ≈90 GW peak power is the highest value ever reached at this wavelength. In order to fully compress the laser pulses our system is built in a nitrogen box. Our system utilizes water cooled chromium doped zinc selenide (Cr:ZnSe) as the gain medium and is pumped by a commercial nanosecond holmium doped yttrium-aluminum-garnet (Ho:YAG) laser.
能够通过高次谐波产生在水窗(282至533电子伏特)产生阿秒X射线脉冲的激光器通常基于由飞秒或皮秒激光器泵浦的低效多阶段光学参量放大器或光学参量啁啾脉冲放大器。在此,我们报告了一种基于传统啁啾脉冲放大的非常高效的单放大级激光器,它能够产生4毫焦、近变换极限的44飞秒(<6个周期)、1千赫兹、中心波长为2.5微米的脉冲。约90吉瓦的峰值功率是该波长下达到的最高值。为了完全压缩激光脉冲,我们的系统构建在一个氮气箱中。我们的系统利用水冷掺铬硒化锌(Cr:ZnSe)作为增益介质,并由商用纳秒掺钬钇铝石榴石(Ho:YAG)激光器泵浦。