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A tunable laser diode with a photothermally driven integrated cantilever and related properties

机译:具有光热驱动集成悬臂和相关特性的可调谐激光二极管

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摘要

This paper proposes a photothermally driven tunable laser diode (LD). We demonstrate a micromechanically tunable structure using an edge-emitting LD, a trial fabrication for a monolithic integration with a cantilever and LDs, an enhanced design for widening the wavelength tuning range, and wavelength variation experiments. We describe the design of an antireflection layer and a bimorph layer structure cantilever and expect the deflection to exceed half a wavelength by the temperature increase of 100°C. We also confirm a 23-nm wavelength variation by changing the external-cavity length of the LD, which features an antireflection coating on the LD facet facing the external mirror.
机译:本文提出了一种光热驱动的可调谐激光二极管(LD)。我们演示了使用边缘发射LD的微机械可调结构,与悬臂和LD的单片集成的试制,用于扩展波长调谐范围的增强型设计以及波长变化实验。我们描述了抗反射层和双压电晶片层结构悬臂的设计,并期望随着温度升高100°C,偏转将超过波长的一半。我们还通过更改LD的外腔长度来确认23 nm的波长变化,该特性在面向外镜的LD小平面上具有抗反射涂层。

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