His main research concerns Optics, Fiber laser, Optical fiber, Laser beam quality and Photonic-crystal fiber. Cesar Jauregui usually deals with Optics and limits it to topics linked to Amplifier and Fiber and Transverse plane. His research investigates the connection with Fiber laser and areas like Beam which intersect with concerns in Self-phase modulation, Photodiode, Ytterbium and Laser.
As part of the same scientific family, Cesar Jauregui usually focuses on Optical fiber, concentrating on Core and intersecting with Subwavelength-diameter optical fibre, Bent molecular geometry, Transducer, Liquid level measurement and Polishing. In his study, which falls under the umbrella issue of Laser beam quality, Filling factor, Slope efficiency and Laser linewidth is strongly linked to Double-clad fiber. His Photonic-crystal fiber research includes elements of Dispersion-shifted fiber, Zero-dispersion wavelength and Waveguide.
His primary areas of study are Optics, Fiber laser, Optoelectronics, Photonic-crystal fiber and Laser. His research related to Polarization-maintaining optical fiber, Dispersion-shifted fiber, Optical fiber, Mode volume and Graded-index fiber might be considered part of Optics. His research in Fiber laser intersects with topics in Ultrashort pulse, Laser beam quality, Amplifier and Laser power scaling.
He combines subjects such as Four-wave mixing and Raman scattering with his study of Optoelectronics. He combines Photonic-crystal fiber and Mode in his studies. His Tunable laser and Femtosecond study in the realm of Laser interacts with subjects such as Relative intensity noise.
Cesar Jauregui mainly focuses on Fiber laser, Optics, Ultrashort pulse, Optoelectronics and Transverse mode. The concepts of his Fiber laser study are interwoven with issues in Laser beam quality, Doping and Laser power scaling. His biological study spans a wide range of topics, including Amplifier and Instability.
His Ultrashort pulse research incorporates themes from Pulse duration, High harmonic generation and Pulse. Cesar Jauregui focuses mostly in the field of Optoelectronics, narrowing it down to matters related to Particle acceleration and, in some cases, Slope efficiency. His study on Transverse mode also encompasses disciplines like
Cesar Jauregui mostly deals with Fiber laser, Optics, Transverse mode, Instability and Optoelectronics. Cesar Jauregui has included themes like Ultrashort pulse, High power lasers and Core in his Fiber laser study. His study looks at the relationship between Optics and fields such as Amplifier, as well as how they intersect with chemical problems.
His research investigates the connection between Instability and topics such as Doping that intersect with issues in Photodarkening. His study in the fields of Terahertz radiation under the domain of Optoelectronics overlaps with other disciplines such as Order of magnitude. As a part of the same scientific study, Cesar Jauregui usually deals with the Beam, concentrating on Laser power scaling and frequently concerns with Transverse plane.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
High-power fibre lasers
Cesar Jauregui;Jens Limpert;Jens Limpert;Jens Limpert;Andreas Tünnermann;Andreas Tünnermann;Andreas Tünnermann.
Nature Photonics (2013)
Experimental observations of the threshold-like onset of mode instabilities in high power fiber amplifiers
Tino Eidam;Christian Wirth;Cesar Jauregui;Fabian Stutzki.
Optics Express (2011)
Fiber chirped-pulse amplification system emitting 3.8 GW peak power.
Tino Eidam;Jan Rothhardt;Fabian Stutzki;Florian Jansen.
Optics Express (2011)
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.
Light-Science & Applications (2012)
Physical origin of mode instabilities in high-power fiber laser systems.
Cesar Jauregui;Tino Eidam;Hans-Jürgen Otto;Fabian Stutzki.
Optics Express (2012)
The impact of modal interference on the beam quality of high-power fiber amplifiers.
Cesar Jauregui;Tino Eidam;Jens Limpert;Andreas Tünnermann.
Optics Express (2011)
Temporal dynamics of mode instabilities in high-power fiber lasers and amplifiers
Hans-Jürgen Otto;Fabian Stutzki;Florian Jansen;Tino Eidam.
Optics Express (2012)
High average power large-pitch fiber amplifier with robust single-mode operation.
Fabian Stutzki;Florian Jansen;Tino Eidam;Alexander Steinmetz.
Optics Letters (2011)
Femtosecond and picosecond laser drilling of metals at high repetition rates and average powers
A Ancona;S Döring;C Jauregui;F Röser.
Optics Letters (2009)
94 W 980 nm high brightness Yb-doped fiber laser
Fabian Röser;Cesar Jauregui;Jens Limpert;Andreas Tünnermann.
Optics Express (2008)
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