We demonstrated that spatial Kerr beam self-cleaning can be obtained in a highly multimode multicomponent optical fiber based on lanthanum aluminum silicate oxide glasses (SiO2-Al2O3-La2O3), which was made by using the modified powder in tube technology (MIPT). We show how such fabrication method can provide interesting potentialities to design doped multimode optical fibers with homogeneous and quasi-parabolic refractive-index core profile for nonlinear optics applications.

Spatial beam self-cleaning in multimode lanthanum aluminum silicate glass fiber / Guenard, R.; Krupa, K.; Tonello, A.; Fabert, M.; Auguste, J. -L.; Humbert, G.; Leparmentier, S.; Duclere, J. -R.; Chenu, S.; Delaizir, G.; Millot, G.; Modotto, D.; Wabnitz, S.; Couderc, V.. - In: OPTICAL FIBER TECHNOLOGY. - ISSN 1068-5200. - 53:(2019). [10.1016/j.yofte.2019.102014]

Spatial beam self-cleaning in multimode lanthanum aluminum silicate glass fiber

Wabnitz S.;
2019

Abstract

We demonstrated that spatial Kerr beam self-cleaning can be obtained in a highly multimode multicomponent optical fiber based on lanthanum aluminum silicate oxide glasses (SiO2-Al2O3-La2O3), which was made by using the modified powder in tube technology (MIPT). We show how such fabrication method can provide interesting potentialities to design doped multimode optical fibers with homogeneous and quasi-parabolic refractive-index core profile for nonlinear optics applications.
2019
four-wave mixing; multimaterial optical fiber; multimode fiber; nonlinear propagation; powder in tube; self-cleaning
01 Pubblicazione su rivista::01a Articolo in rivista
Spatial beam self-cleaning in multimode lanthanum aluminum silicate glass fiber / Guenard, R.; Krupa, K.; Tonello, A.; Fabert, M.; Auguste, J. -L.; Humbert, G.; Leparmentier, S.; Duclere, J. -R.; Chenu, S.; Delaizir, G.; Millot, G.; Modotto, D.; Wabnitz, S.; Couderc, V.. - In: OPTICAL FIBER TECHNOLOGY. - ISSN 1068-5200. - 53:(2019). [10.1016/j.yofte.2019.102014]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1322514
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