Coherence of supercontinua generated by ultrashort pulses compressed in optical fibers

Femtosecond fiber lasers together with nonlinear fibers are compact, reliable, all-fiber supercontinuum sources. Maintaining an all-fiber configuration, however, necessitates pulse compression in an optical fiber, which can lead to nonlinearities for subhundred femtosecond, nanojoule pulses. In this...

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Veröffentlicht in:Optics letters 2008-09, Vol.33 (18), p.2038-2040
Hauptverfasser: NICHOLSON, J. W, YABLON, A. D, DIMARCELLO, F, FINI, J, YAN, M. F, WISK, P, BISE, R, TREVOR, D. J, ALONZO, J, STOCKERT, T, FLEMING, J, MONBERG, E
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Sprache:eng
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Zusammenfassung:Femtosecond fiber lasers together with nonlinear fibers are compact, reliable, all-fiber supercontinuum sources. Maintaining an all-fiber configuration, however, necessitates pulse compression in an optical fiber, which can lead to nonlinearities for subhundred femtosecond, nanojoule pulses. In this work we show that using large-mode-area fibers for pulse compression mitigates the nonlinearity, resulting in compressed pulses with significantly reduced satellite pulses. Consequently, supercontinua generated with these pulses are shown to have as much as a 10 dB increase in coherence fringe contrast. By using a hybrid highly nonlinear fiber-photonic crystal fiber, the continuum can be extended to visible wavelengths while still maintaining high coherence.
ISSN:0146-9592
1539-4794
DOI:10.1364/ol.33.002038