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  4. Self-compression in a solid fiber to 24  MW peak power with few-cycle pulses at 2  mm wavelength
 
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2015
Journal Article
Title

Self-compression in a solid fiber to 24  MW peak power with few-cycle pulses at 2  mm wavelength

Abstract
We report on the experimental realization of a compact, fiber-based, ultrashort-pulse laser system in the 2 mm wavelength region delivering 24 fs pulse duration with 24 MW pulse peak power and 24.6 W average power. This performance level has been enabled by the favorable quadratic wavelength-dependence of the self-focusing limit, which has been experimentally verified to be at approximately 24 MW for circular polarization in a solid-core fused-silica fiber operated at a wavelength around 2 mm. The anomalous dispersion in this wavelength region allows for a simultaneous nonlinear spectral broadening and temporal pulse compression. This makes an additional compression stage redundant and facilitates a very simple and power-scalable approach. Simulations that include both the nonlinear pulse evolution and the transverse optical Kerr effect support the experimental results.
Author(s)
Gaida, C.
Gebhardt, M.
Tutzki, F.S.
Jauregui, C.
Limpert, J.
Tünnermann, A.
Journal
Optics Letters  
DOI
10.1364/OL.40.005160
Language
English
Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF  
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