615  fs pulses with 17  mJ energy generated by an Yb:thin-disk amplifier at 3  kHz repetition rate

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2016
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Ultrafast Quantum Physics in Amplitude and Phase - UltraPhase, ERC Advanced Grant
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Optics Letters. 2016, 41(2), pp. 246-249. ISSN 0146-9592. eISSN 1539-4794. Available under: doi: 10.1364/OL.41.000246
Zusammenfassung

A combination of Er/Yb:fiber and Yb:thin-disk technology produces 615 fs pulses at 1030 nm with an average output power of 72 W. The regenerative amplifier allows variation of the repetition rate between 3 and 5 kHz with pulse energies from 13 to 17 mJ. A broadband and intense seed provided by the compact and versatile fiber front-end minimizes gain narrowing. The resulting sub-ps performance is ideal for nonlinear frequency conversion and pulse compression. Operating in the upper branch of a bifurcated pulse train, the system exhibits exceptional noise performance and stability.

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ISO 690FISCHER, Jonathan, Alexander-Cornelius HEINRICH, Simon MAIER, Julian JUNGWIRTH, Daniele BRIDA, Alfred LEITENSTORFER, 2016. 615  fs pulses with 17  mJ energy generated by an Yb:thin-disk amplifier at 3  kHz repetition rate. In: Optics Letters. 2016, 41(2), pp. 246-249. ISSN 0146-9592. eISSN 1539-4794. Available under: doi: 10.1364/OL.41.000246
BibTex
@article{Fischer2016615fs-33527,
  year={2016},
  doi={10.1364/OL.41.000246},
  title={615  fs pulses with 17  mJ energy generated by an Yb:thin-disk amplifier at 3  kHz repetition rate},
  number={2},
  volume={41},
  issn={0146-9592},
  journal={Optics Letters},
  pages={246--249},
  author={Fischer, Jonathan and Heinrich, Alexander-Cornelius and Maier, Simon and Jungwirth, Julian and Brida, Daniele and Leitenstorfer, Alfred}
}
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