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Physics

D-Index
100
Citations
34025
World Ranking
1659
National Ranking
145

Overview

Jens Limpert is affiliated with Friedrich Schiller University Jena in Germany. Their research primarily spans the fields of Physics and Astronomy as well as Engineering, with specific focus on subfields such as Atomic and Molecular Physics and Optics, Electrical and Electronic Engineering, Radiation, Nuclear and High Energy Physics, and Structural Biology.

The scientist's work addresses several main topics including Advanced Fiber Laser Technologies, Laser-Matter Interactions and Applications, Photonic Crystal and Fiber Optics, Advanced X-ray Imaging Techniques, Laser-Plasma Interactions and Diagnostics, Advanced Electron Microscopy Techniques and Applications, and Advanced Fiber Optic Sensors.

The following list shows some of their recent papers along with publication years and venues:

  • 10.4 kW coherently combined ultrafast fiber laser, 2020, Optics Letters
  • Multipass cell for high-power few-cycle compression, 2021, Optics Letters
  • Material-specific high-resolution table-top extreme ultraviolet microscopy, 2022, Light Science & Applications
  • Intensity noise as a driver for transverse mode instability in fiber amplifiers, 2020, PhotoniX
  • Gas-plasma-based generation of broadband terahertz radiation with 640 mW average power, 2021, Optics Letters

Frequent coauthors in Jens Limpert's publications include:

  • Jan Rothhardt
  • Robert Klas
  • César Jáuregui
  • Wilhelm Eschen
  • Martin Gebhardt

The venues where Jens Limpert most frequently publishes are:

  • Optics Express
  • Optics Letters
  • EPJ Web of Conferences
  • Laser Congress 2020 (ASSL, LAC)
  • arXiv (Cornell University)

Best Publications

  • High-power fibre lasers

    Cesar Jauregui;Jens Limpert;Jens Limpert;Jens Limpert;Andreas Tünnermann;Andreas Tünnermann;Andreas Tünnermann

  • Petawatt and exawatt class lasers worldwide

    Colin N. Danson;Constantin Haefner;Jake Bromage;Thomas Butcher

  • Femtosecond fiber CPA system emitting 830 W average output power.

    Tino Eidam;Stefan Hanf;Enrico Seise;Thomas V. Andersen

  • Experimental observations of the threshold-like onset of mode instabilities in high power fiber amplifiers

    Tino Eidam;Christian Wirth;Cesar Jauregui;Fabian Stutzki

  • High-power air-clad large-mode-area photonic crystal fiber laser.

    Jens Limpert;T. Schreiber;S. Nolte;H. Zellmer

  • Extended single-mode photonic crystal fiber lasers

    J. Limpert;O. Schmidt;J. Rothhardt;F. Röser

  • Low-nonlinearity single-transverse-mode ytterbium-doped photonic crystal fiber amplifier.

    J. Limpert;A. Liem;M. Reich;T. Schreiber

  • The future is fibre accelerators

    Gerard Mourou;Bill Brocklesby;Toshiki Tajima;Jens Limpert

  • Millijoule pulse energy high repetition rate femtosecond fiber chirped-pulse amplification system

    F. Röser;T. Eidam;J. Rothhardt;O. Schmidt

  • High-power rod-type photonic crystal fiber laser.

    J. Limpert;N. Deguil-Robin;I. Manek-Hönninger;F. Salin

  • Yb-doped large-pitch fibres: effective single-mode operation based on higher-order mode delocalisation

    Jens Limpert;Jens Limpert;Jens Limpert;Fabian Stutzki;Florian Jansen;Hans-Jürgen Otto

  • Fiber chirped-pulse amplification system emitting 3.8 GW peak power.

    Tino Eidam;Jan Rothhardt;Fabian Stutzki;Florian Jansen

  • High-power femtosecond Yb-doped fiber amplifier.

    Jens Limpert;T. Schreiber;T. Clausnitzer;K. Zöllner

  • Temporal dynamics of mode instabilities in high-power fiber lasers and amplifiers

    Hans-Jürgen Otto;Fabian Stutzki;Florian Jansen;Tino Eidam

  • 100-W single-frequency master-oscillator fiber power amplifier.

    A Liem;J Limpert;H Zellmer;A Tünnermann

  • The Rising Power of Fiber Lasers and Amplifiers

    J. Limpert;F. Roser;S. Klingebiel;T. Schreiber

  • High speed laser drilling of metals using a high repetition rate, high average power ultrafast fiber CPA system.

    A. Ancona;F. Röser;K. Rademaker;J. Limpert

  • 131 W 220 fs fiber laser system.

    F. Röser;J. Rothhard;B. Ortac;A. Liem

  • Physical origin of mode instabilities in high-power fiber laser systems.

    Cesar Jauregui;Tino Eidam;Hans-Jürgen Otto;Fabian Stutzki

  • High-power ultrafast fiber laser systems

    J. Limpert;F. Roser;T. Schreiber;A. Tunnermann

Frequent Co-Authors

Andreas Tünnermann
Andreas Tünnermann Friedrich Schiller University Jena
Cesar Jauregui
Cesar Jauregui Friedrich Schiller University Jena
Florian Jansen
Florian Jansen Friedrich Schiller University Jena
Stefan Nolte
Stefan Nolte Friedrich Schiller University Jena
Ferenc Krausz
Ferenc Krausz Max Planck Institute of Quantum Optics
Jürgen Popp
Jürgen Popp Friedrich Schiller University Jena
Theodor W. Hänsch
Theodor W. Hänsch Max Planck Institute of Quantum Optics
Thomas Pertsch
Thomas Pertsch Friedrich Schiller University Jena
Benjamin Dietzek
Benjamin Dietzek Friedrich Schiller University Jena
Jes Broeng
Jes Broeng Technical University of Denmark

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