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Highly dispersive large mode area photonic bandgap fiber
Authors:Gérôme Frédéric  Février Sébastien  Pryamikov Andrey D  Auguste Jean-Louis  Jamier Raphaël  Blondy Jean-Marc  Likhachev Mikhail E  Bubnov Mikhail M  Semjonov Sergei L  Dianov Evgeny M
Affiliation:Xlim, UMR CNRS no. 6172, Limoges, France.
Abstract:An all-silica photonic bandgap fiber composed of a low-index core surrounded by alternating high- and low-index rings allows us to achieve a large mode area (500 microm(2)) and large chromatic dispersion. Sharp resonances from the even Bragg mode to odd ring modes theoretically lead to 20,000 ps/(nm km) chromatic dispersion when large bends are applied. By nature, sharp resonances are sensitive to inhomogeneities along the fiber length. Under experimental conditions, the resonances are broadened and the dispersion coefficient is decreased to 1000 ps/(nm km). However, to the best of our knowledge, this is the largest dispersion coefficient reported using a large mode area fiber.
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