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Improved design for the monolithic integration of a laser and an optical waveguide coupled by an evanescent field

机译:用于通过and逝场耦合的激光器和光波导的单片集成的改进设计

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摘要

A model is proposed to optimize the design of a laser monolithically integrated with a transparent waveguide by an evanescent field. A five-layer structure is shown to be so sensitive to the growth parameters that the threshold current and coupled into the waveguide are basically uncontrollable. The model makes it clear that separate-confinement structures, in which the active layer is attached to a thicker waveguide, are more suitable. The increase of threshold current in these configurations can be efficiently offset by depositing high-reflectivity coatings on the facets of the devices. Moreover, these coatings are shown to further reduce the sensitivity of the devices to technological fluctuations. The use of a single quantum well embedded into a single-mode guide is proposed to obtain very low threshold currents while maintaining a low sensitivity to growth fluctuations.
机译:提出了一种模型,以通过optimize逝场优化与透明波导单片集成的激光器的设计。示出了五层结构对生长参数非常敏感,以至于阈值电流和耦合到波导中的阈值电流基本上是不可控制的。该模型清楚地表明,其中有源层连接到较厚波导的单独限制结构更合适。在这些配置中,阈值电流的增加可以通过在设备的小面上沉积高反射涂层来有效地抵消。而且,这些涂层显示出可进一步降低器件对技术波动的敏感性。提出使用嵌入单模波导中的单量子阱来获得非常低的阈值电流,同时保持对生长波动的低敏感性。

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