Demonstration of decoupled farfield and efficiency optimization for 14xx Raman pump lasers

F. Wijnands, L. Buydens, F. Heinrichsdorff, R. van der Linden, A. Corbijn, R. Lammers, P. Thijs
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Abstract

Experimental and theoretical results have been presented for buried heterostructure 14xx pump lasers with and without an extra quaternary waveguide at the n-side of the active region, pulling the mode away from the p-InP cladding layers, reducing the internal loss by up to 1.6 cm/sup -1/. The experimental results are in agreement with the theoretical value. The farfield for the design with extra waveguide is more circular than that without an extra waveguide by 1/spl deg/ vertically, in agreement with the theoretical difference. These results show that using an extra waveguide at the n-side, gives the designer more flexibility to both optimise the internal loss (hence the front-facet slope efficiency) and the farfield (hence the fiber coupling efficiency). This approach has been demonstrated for a buried heterostructure design, but is applicable to other laser types as well, e.g., (buried) ridge lasers.
14xx拉曼泵浦激光器去耦远场论证及效率优化
实验和理论结果表明,埋置异质结构14xx泵浦激光器在有源区n侧有或没有额外的四元波导,将模式拉离p-InP包层,减少内部损耗高达1.6 cm/sup -1/。实验结果与理论值吻合较好。加波导的远场比不加波导的远场在垂直方向上圆了1/spl度,与理论差值一致。这些结果表明,在n侧使用额外的波导,使设计人员能够更灵活地优化内部损耗(从而提高前面斜率效率)和远场(从而提高光纤耦合效率)。这种方法已被证明用于埋置异质结构设计,但也适用于其他类型的激光器,例如(埋置)脊激光器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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