Title :
Optimal design of cascaded long-period waveguide grating equalizer for broadband Er-Yb co-doped phosphate glass waveguide amplifiers
Author_Institution :
School of Physics Science and Technology, Yangtze University, Jingzhou, 434023, China
Abstract :
Broadband integrated Er-Yb codoped phosphate glass waveguide amplifier based on cascaded long-period waveguide grating gain-equalizer is proposed. The proposed cascaded long-period waveguide grating gain-equalizer consists of some different long-period waveguide grating filtering unit cells, and each cell can suppress certain peak gain at a specific wavelength. The intrinsical gain spectrum of amplifier is obtained by solving a set of rate and power propagation equations with overlapping integral-Runge Kutter method. The effect of the transmission spectrum of the proposed cascaded long-period waveguide grating on the flattening gain of Er-Yb codoped phosphate glass waveguide amplifier is discussed. The transmission function of the cascaded long-period waveguide grating filter is obtained.
Keywords :
Broadband amplifiers; Equalizers; Glass; Gratings; Optical amplifiers; Optical films; Optical filters; Optical waveguides; Semiconductor optical amplifiers; Stimulated emission; Optical amplifier; broadband; cascaded long-period waveguide grating; erbium-ytterbium co-doped phosphate glass; optical waveguide amplifier;
Conference_Titel :
Communications and Photonics Conference and Exhibition (ACP), 2009 Asia
Conference_Location :
Shanghai, China
Print_ISBN :
978-1-55752-877-3
Electronic_ISBN :
978-1-55752-877-3