Self-compression in a solid fiber to 24 MW peak power with few-cycle pulses at 2 µm wavelength.
Opt Lett
; 40(22): 5160-3, 2015 Nov 15.
Article
en En
| MEDLINE
| ID: mdl-26565824
We report on the experimental realization of a compact, fiber-based, ultrashort-pulse laser system in the 2 µm 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 µm. 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.
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