Wang, S., Yan, J., Song, S., Atanassov, A., Wu, Z., Brunner, W., Popmintchev, D., & Popmintchev, T. (2023). High-performance ultrafast pulse compression in the visible spectral range for extreme nonlinear optics at kHz-MHz repetition rates. arXiv. https://doi.org/10.48550/arXiv.2307.01164
We demonstrate a remarkably effective single-stage compression technique for ultrafast pulses in the visible electromagnetic spectrum using second-harmonic pulses at 515 ππππderived from a 1030 ππππ Yb-based femtosecond regenerative amplifier. By employing an advanced multi-plate scheme, we achieve more than fourfold compression from 180 ππππ to 40 ππππ with an extremely high spectral broadening efficiency of over 95%, and a temporal compression efficiency exceeding 75%. In addition, our method leverages a low nonlinearity medium to attain the shortest pulse durations for a single compressor while maintaining a superb spatial beam quality with 97% of the energy confined in the main lobe of the Arie disk.
Moreover, our technique enhances the temporal pulse quality at 515 ππππ without generating substantial femtosecond-to-picosecond pulse pedestals. The resulting intense visible laser pulses with excellent spatio-temporal parameters and high repetition rate of 100 ππππππ to 1 ππππππ open up new frontiers for extreme nonlinear optics and ultrabright EUV and X-ray high-harmonic generation using short VIS wavelength.
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Project title:
X-ray-waveforms at the Space-Time Resolution Extreme for Atomic-scale Movies XSTREAM: ERC-2016-STG/ERC-2016-STG (EuropΓ€ischer Forschungsrat (ERC))