Pfaff Yanik, Barbiero Gaia, Rampp Michael, Klingebiel Sandro, Brons Jonathan, Teisset Catherine Y, Wang Haochuan, Jung Robert, Jaksic Jasna, Woldegeorgis Abel H, Trunk Maximilian, Maier Andreas R, Saraceno Clara J, Metzger Thomas
Opt Express. 2023 Jul 3;31(14):22740-22756. doi: 10.1364/OE.494359.
We present a high-energy laser source consisting of an ultrafast thin-disk amplifier followed by a nonlinear compression stage. At a repetition rate of 5 kHz, the drive laser provides a pulse energy of up to 200 mJ with a pulse duration below 500 fs. Nonlinear broadening is implemented inside a Herriott-type multipass cell purged with noble gas, allowing us to operate under different seeding conditions. Firstly, the nonlinear broadening of 64 mJ pulses is demonstrated in an argon-filled cell, showing a compressibility down to 32 fs. Finally, we employ helium as a nonlinear medium to increase the energy up to 200 mJ while maintaining compressibility below 50 fs. Such high-energy pulses with sub-50 fs duration hold great promise as drivers of secondary sources.
我们展示了一种高能激光源,它由一个超快薄片放大器和一个非线性压缩阶段组成。在5 kHz的重复频率下,驱动激光提供高达200 mJ的脉冲能量,脉冲持续时间低于500 fs。非线性展宽在充有惰性气体的赫里奥特型多程池中实现,这使我们能够在不同的种子注入条件下运行。首先,在充氩气的池中演示了64 mJ脉冲的非线性展宽,显示出可压缩至32 fs。最后,我们使用氦作为非线性介质,将能量提高到200 mJ,同时保持可压缩性低于50 fs。这种持续时间低于50 fs的高能脉冲作为二次光源的驱动源具有很大的潜力。