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Rüdiger Paschotta

Rüdiger Paschotta

D-Index & Metrics

Engineering and Technology

D-Index
52
Citations
10765
World Ranking
3608
National Ranking
112

Research.com Recognitions

  • 2017 - OSA Fellows Rüdiger  Paschotta RP Photonics Consulting GmbH, Germany “for the creation of an online encyclopedia on optics and photonics and for important contributions to the understanding and optimization of ultrafast lasers” (Volunteer/Professional Service)
  • 2012 - SPIE Fellow

Overview

Rüdiger Paschotta is affiliated with RP Photonics Consulting in Germany. They have been recognized within the optics and photonics community for their contributions to the field.

Among distinctions received, Rüdiger Paschotta was named an OSA Fellow in 2017, with citation highlighting the creation of an online encyclopedia on optics and photonics as well as contributions to the understanding and optimization of ultrafast lasers. Additionally, they were designated a SPIE Fellow in 2012.

While detailed information about Rüdiger Paschotta's publications, coauthors, and specific research topics is not available, the noted awards and affiliation suggest involvement in areas related to laser technology and photonics.

Best Publications

  • Ytterbium-doped fiber amplifiers

    R. Paschotta;J. Nilsson;A.C. Tropper;D.C. Hanna

  • Q-switching stability limits of continuous-wave passive mode locking

    C. Hönninger;R. Paschotta;F. Morier-Genoud;M. Moser

  • Ultrafast ytterbium-doped bulk lasers and laser amplifiers

    C. Hönninger;R. Paschotta;M. Graf;F. Morier-Genoud

  • Experimentally confirmed design guidelines for passively Q-switched microchip lasers using semiconductor saturable absorbers

    G. J. Spühler;R. Paschotta;R. Fluck;B. Braun

  • 60-W average power in 810-fs pulses from a thin-disk Yb:YAG laser

    E. Innerhofer;T. Südmeyer;F. Brunner;R. Häring

  • Passively Q-switched 0.1-mJ fiber laser system at 1.53 mum.

    R. Paschotta;R. Häring;E. Gini;H. Melchior

  • 240-fs pulses with 22-W average power from a mode-locked thin-disk Yb:KY(WO(4))(2) laser.

    F. Brunner;T. Südmeyer;E. Innerhofer;F. Morier-Genoud

  • Diode-pumped femtosecond Yb:KGd(WO(4))(2) laser with 1.1-W average power.

    F. Brunner;G. J. Spühler;J. Aus der Au;L. Krainer

  • Passively mode-locked diode-pumped surface-emitting semiconductor laser

    S. Hoogland;S. Dhanjal;A.C. Tropper;J.S. Roberts

  • Lifetime quenching in Yb-doped fibres

    R. Paschotta;J. Nilsson;P.R. Barber;J.E. Caplen

  • 16.2-W average power from a diode-pumped femtosecond Yb:YAG thin disk laser.

    J. Aus der Au;G. J. Spühler;T. Südmeyer;R. Paschotta

  • High-power passively mode-locked semiconductor lasers

    R. Haring;R. Paschotta;A. Aschwanden;E. Gini

  • Ring-doped cladding-pumped single-mode three-level fiber laser

    J. Nilsson;J. D. Minelly;R. Paschotta;A. C. Tropper

  • Field guide to laser pulse generation

    Rüdiger Paschotta

  • Compact Nd:YVO/sub 4/ lasers with pulse repetition rates up to 160 GHz

    L. Krainer;R. Paschotta;S. Lecomte;M. Moser

  • 2.1-W picosecond passively mode-locked external-cavity semiconductor laser

    A. Aschwanden;D. Lorenser;H. J. Unold;R. Paschotta

  • Noise of mode-locked lasers (Part I): numerical model

    R. Paschotta

  • Pulse compression with supercontinuum generation in microstructure fibers

    Birgit Schenkel;Rüdiger Paschotta;Ursula Keller

  • Nonlinear femtosecond pulse compression at high average power levels by use of a large-mode-area holey fiber.

    T Südmeyer;F Brunner;E Innerhofer;R Paschotta

  • Powerful red-green-blue laser source pumped with a mode-locked thin disk laser.

    Felix Brunner;Edith Innerhofer;Sergio V. Marchese;Thomas Südmeyer

  • Passively mode-locked diode-pumped surface-emitting semiconductor laser

    Reto Häring;R. Paschotta;F. Morier-Genoud;U. Keller

Frequent Co-Authors

Ursula Keller
Ursula Keller ETH Zurich
Anne C. Tropper
Anne C. Tropper University of Southampton
Johan Nilsson
Johan Nilsson University of Southampton
David J. Richardson
David J. Richardson Microsoft (United States)
Sjoerd Hoogland
Sjoerd Hoogland University of Toronto
Sunao Kurimura
Sunao Kurimura National Institute for Materials Science
Hiromasa Ito
Hiromasa Ito RIKEN Center for Advanced Photonics
Tanya M. Monro
Tanya M. Monro University of South Australia
Kenji Kitamura
Kenji Kitamura National Institute for Materials Science
W.A. Clarkson
W.A. Clarkson University of Southampton

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