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Trimodal Waveguide Demonstration and Its Implementation as a High Order Mode Interferometer for Sensing Application

机译:三峰波导演示及其作为高阶模态干涉仪的传感应用

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摘要

This work implements and demonstrates an interferometric transducer based on a trimodal optical waveguide concept. The readout signal is generated from the interference between the fundamental and second-order modes propagating on a straight polymer waveguide. Intuitively, the higher the mode order, the larger the fraction of power (evanescent field) propagating outside the waveguide core, hence the higher the sensitivity that can be achieved when interfering against the strongly confined fundamental mode. The device is fabricated using the polymer SU-8 over a SiO2 substrate and shows a free spectral range of 20.2 nm and signal visibility of 5.7 dB, reaching a sensitivity to temperature variations of 0.0586 dB/°C. The results indicate that the proposed interferometer is a promising candidate for highly sensitive, compact and low-cost photonic transducer for implementation in different types of sensing applications, among these, point-of-care.
机译:这项工作实现并演示了基于三峰光学波导概念的干涉传感器。读出信号是由在直线聚合物波导上传播的基模和二阶模之间的干扰产生的。直觉上,模式阶数越高,传播到波导芯外部的功率(渐逝场)份额就越大,因此,在干扰强约束的基本模式时可以实现的灵敏度越高。该器件是使用聚合物SU-8在SiO2衬底上制造的,其自由光谱范围为20.2 nm,信号可见度为5.7 dB,对温度变化的灵敏度为0.0586 dB /°C。结果表明,所提出的干涉仪是高灵敏度,紧凑型和低成本光子换能器的有前途的候选者,可用于不同类型的传感应用中,包括即时医疗。

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