Parametric Amplification of Phase-Locked Few-Cycle Pulses and Ultraviolet Harmonics Generation in Solids at High Repetition Rate
Parametric Amplification of Phase-Locked Few-Cycle Pulses and Ultraviolet Harmonics Generation in Solids at High Repetition Rate
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Laser & Photonics Reviews ; 11 (2017), 6. - 1700062. - ISSN 1863-8880. - eISSN 1863-8899
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A high-power femtosecond Yb:fiber system is seeded by a phase-locked Er:fiber source and drives an ultra-broadband optical parametric amplifier that operates at 10 MHz repetition rate. The resulting pulses display precise control of the carrier-envelope phase. Their 8.3 fs temporal duration corresponds to 2.3 optical cycles of the 1100 nm carrier wavelength. Focusing 200 nJ of pulse energy into widegap materials generates optical harmonics up to fifth order. Even in a perturbative regime, strong effects of the carrier-envelope phase on the emitted spectra are observed.
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STORZ, Patrick, Jonas TAUCH, Marcel WUNRAM, Alfred LEITENSTORFER, Daniele BRIDA, 2017. Parametric Amplification of Phase-Locked Few-Cycle Pulses and Ultraviolet Harmonics Generation in Solids at High Repetition Rate. In: Laser & Photonics Reviews. 11(6), 1700062. ISSN 1863-8880. eISSN 1863-8899. Available under: doi: 10.1002/lpor.201700062BibTex
@article{Storz2017-11Param-40917, year={2017}, doi={10.1002/lpor.201700062}, title={Parametric Amplification of Phase-Locked Few-Cycle Pulses and Ultraviolet Harmonics Generation in Solids at High Repetition Rate}, number={6}, volume={11}, issn={1863-8880}, journal={Laser & Photonics Reviews}, author={Storz, Patrick and Tauch, Jonas and Wunram, Marcel and Leitenstorfer, Alfred and Brida, Daniele}, note={Article Number: 1700062} }
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