Strong phase-controlled fiber Bragg gratings for dispersion compensation
Yisi Liu, Liang Dong, Jing Pan, Claire Gu
Abstract
Yisi Liu, Liang Dong, Jing Pan, Claire Gu
Abstract
Dispersion-compensating fiber Bragg gratings with approximately 99.9% reflectivity that are made by continuous apodization and phase control are demonstrated. These strong dispersion-compensating gratings provide precision second-order, third-order, or even more complex dispersion compensation, as well as sufficient transmission isolation to be used at add-drop stages without additional filtering. A 99.84% grating with a constant approximately 700-ps/nm dispersion and a 99.94% grating with dispersion varying linearly from 1000 to -1000 ps/nm are demonstrated.
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Dispersion-compensating fiber Bragg gratings with approximately 99.9% reflectivity that are made by continuous apodization and phase control are demonstrated. These strong dispersion-compensating gratings provide precision second-order, third-order, or even more complex dispersion compensation, as well as sufficient transmission isolation to be used at add-drop stages without additional filtering. A 99.84% grating with a constant approximately 700-ps/nm dispersion and a 99.94% grating with dispersion varying linearly from 1000 to -1000 ps/nm are demonstrated.
Key concepts: Optics, Fiber Bragg grating, Materials science, Dispersion (optics), Apodization, PHOSFOS, Grating, Dispersion-shifted fiber