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Cutting-Edge High-Power Ultrafast Thin Disk Oscillators

Auteur(s)
Saraceno, Clara J
Schriber, Cinia
Emaury, Florian
Heckl, Oliver H
Baer, Cyrill R. E
Hoffmann, Martin 
Institut de physique 
Beil, Kolja
Kränkel, Christian
Golling, Matthias
Südmeyer, Thomas 
Institut de physique 
Keller, Ursula
Date de parution
2013
In
Applied Science, MDPI
Vol.
3
No
2
De la page
355
A la page
395
Mots-clés
  • ultrafast laser
  • high-power laser
  • semiconductor saturable absorber mirror (SESAM)
  • thin disk laser
  • ultrafast laser

  • high-power laser

  • semiconductor saturab...

  • thin disk laser

Résumé
A growing number of applications in science and industry are currently pushing the development of ultrafast laser technologies that enable high average powers. SESAM modelocked thin disk lasers (TDLs) currently achieve higher pulse energies and average powers than any other ultrafast oscillator technology, making them excellent candidates in this goal. Recently, 275 W of average power with a pulse duration of 583 fs were demonstrated, which represents the highest average power so far demonstrated from an ultrafast oscillator. In terms of pulse energy, TDLs reach more than 40 µJ pulses directly from the oscillator. In addition, another major milestone was recently achieved, with the demonstration of a TDL with nearly bandwidth-limited 96-fs long pulses. The progress achieved in terms of pulse duration of such sources enabled the first measurement of the carrier-envelope offset frequency of a modelocked TDL, which is the first key step towards full stabilization of such a source. We will present the key elements that enabled these latest results, as well as an outlook towards the next scaling steps in average power, pulse energy and pulse duration of such sources. These cutting-edge sources will enable exciting new applications, and open the door to further extending the current performance milestones.
Identifiants
https://libra.unine.ch/handle/123456789/8292
_
10.3390/app3020355
Type de publication
journal article
Dossier(s) à télécharger
 main article: Saraceno_C.J.-Cutting-edge_high-power-20140818.pdf (2.41 MB)
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