Localized waveguide formation in germanosilicate fiber transmitting femtosecond IR pulses
Identifieur interne : 000390 ( Ncbi/Curation ); précédent : 000389; suivant : 000391Localized waveguide formation in germanosilicate fiber transmitting femtosecond IR pulses
Auteurs : Haohua Tu [États-Unis] ; Yee Lin Koh [États-Unis] ; Daniel L. Marks [États-Unis] ; Stephen A. Boppart [États-Unis]Source :
- Journal of the Optical Society of America. B, Optical physics [ 0740-3224 ] ; 2008.
Abstract
Transmission of intense femtosecond 825 nm pulses progressively produces a waveguide at the entrance of a heavily Ge-doped silicate fiber. The waveguide behaves as a multimillimeter long-fiber bandpass filter that scatters away light with wavelengths shorter or longer than 850 nm. This phenomenon has been correlated with the ~800 nm photosensitivity producing type I-IR fiber Bragg gratings in side-written lightly Ge-doped silicate fibers and low-loss waveguides in pure silica bulk glass. A model incorporating color center formation is proposed to understand the underlying mechanism.
Url:
DOI: 10.1364/JOSAB.25.000274
PubMed: 20548798
PubMed Central: 2884162
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<front><div type="abstract" xml:lang="en"><p id="P2">Transmission of intense femtosecond 825 nm pulses progressively produces a waveguide at the entrance of a heavily Ge-doped silicate fiber. The waveguide behaves as a multimillimeter long-fiber bandpass filter that scatters away light with wavelengths shorter or longer than 850 nm. This phenomenon has been correlated with the ~800 nm photosensitivity producing type I-IR fiber Bragg gratings in side-written lightly Ge-doped silicate fibers and low-loss waveguides in pure silica bulk glass. A model incorporating color center formation is proposed to understand the underlying mechanism.</p>
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