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Optical temperature sensor with enhanced sensitivity by employing hybrid waveguides in a silicon Mach-Zehnder interferometer

机译:通过在硅mach-Zehnder干涉仪中采用混合波导,具有增强灵敏度的光学温度传感器

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摘要

We report on a novel design of an on-chip optical temperature sensor based on a Mach-Zehnder interferometer configuration where the two arms consist of hybrid waveguides providing opposite temperature-dependent phase changes to enhance the temperature sensitivity of the sensor. The sensitivity of the fabricated sensor with silicon/polymer hybrid waveguides is measured to be 172 pm/°C, which is two times larger than a conventional all-silicon optical temperature sensor (∼80 pm/°C). Moreover, a design with silicon/titanium dioxide hybrid waveguides is by calculation expected to have a sensitivity as high as 775 pm/°C. The proposed design is found to be design-flexible and robust to fabrication errors.
机译:我们报告了一种基于Mach-Zehnder干涉仪配置的片上光学温度传感器的新颖设计,其中两个臂由混合波导组成,提供了与温度相关的相反相位变化,以增强传感器的温度灵敏度。所制造的具有硅/聚合物混合波导的传感器的灵敏度测得为172 pm /°C,是常规全硅光学温度传感器(〜80 pm /°C)的两倍。此外,通过计算,具有硅/二氧化钛混合波导的设计预计具有高达775 pm /°C的灵敏度。发现提出的设计是设计灵活的并且对制造错误具有鲁棒性。

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