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Asymmetric cladding InGaAs-GaAs ridge waveguide distributed bragg reflector lasers with simultaneous, dual-wavelength operation

机译:不对称包层InGaAs-GaAs脊波导分布式布拉格反射器激光器,具有同时,双波长操作

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Multiwavelength optical sources are important components in applications such as optical communications, optical remote sensing, and optical data processing. In recent years, external cavity laser diodes with biperiodic binary gratings and distributed Bragg reflector (DBR) lasers with periodically modulated gratings have been used to generate multiwavelength outputs. In this work, we report simultaneous, dual-wavelength operation of InGaAs-GaAs asymmetric cladding ridge waveguide (RW) DBR lasers with mode pair separations of 4.1 nm, 8.4 nm, and 16.9 nm. To achieve simultaneous) dual-wavelength operation, the asymmetric cladding RW DBR lasers reported here utilize two sections of separate uniform gratings instead of periodically modulated gratings. Thus, the gratings design, electron beam (EB) lithography, and fabrication processes are simplified.
机译:多波长光源是光通信,光学遥感和光学数据处理等应用中的重要组成部分。近年来,外腔激光二极管具有双周期二进制光栅和具有周期性调制光栅的分布式布拉格反射器(DBR)激光器,用于产生多波长输出。在这项工作中,我们报告了InGaAs-GaAs不对称包层脊波导(RW)DBR激光器的同时,双波长操作,具有4.1nm,8.4nm和16.9nm的模式对分离。为了实现同步)双波长操作,在此报告的非对称包层RW DBR激光器利用两个分开的单独均匀光栅而不是定期调制的光栅。因此,简化了光栅设计,电子束(EB)光刻和制造工艺。

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