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用于基于柔性聚合物波导的光学压力传感的微环结构

Microring structure for flexible polymer waveguide-based optical pressure sensing.

作者信息

Li Hongqiang, Lin Zhilin, Cao Lu, Ren Feng, Zhang Lizhen, Wang Yingjie, Zhao Ruina, Song Zhenya, Liu Yang, Hu Youshan, Li Changyu, Zhang Shanshan, Li Enbang, Prades Joan Daniel

出版信息

Opt Express. 2023 Sep 25;31(20):33535-33547. doi: 10.1364/OE.498784.

Abstract

Flexible pressure sensors provide a promising platform for artificial smart skins, and photonic devices provide a new technique to fabricate pressure sensors. Here, we present a flexible waveguide-based optical pressure sensor based on a microring structure. The waveguide-based optical pressure sensor is based on a five-cascade microring array structure with a size of 1500 µm × 500 µm and uses the change in output power to linearly characterize the change in pressure acting on the device. The results show that the device has a sensing range of 0-60 kPa with a sensitivity of 23.14 µW/kPa, as well as the ability to detect pulse signals, swallowing, hand gestures, etc. The waveguide-based pressure sensors offer the advantages of good output linearity, high integration density and easy-to-build arrays.

摘要

柔性压力传感器为人工智能皮肤提供了一个很有前景的平台,而光子器件为制造压力传感器提供了一种新技术。在此,我们展示了一种基于微环结构的柔性光波导压力传感器。基于光波导的压力传感器基于一个尺寸为1500 µm×500 µm的五级联微环阵列结构,并利用输出功率的变化来线性表征作用在该器件上的压力变化。结果表明,该器件的传感范围为0 - 60 kPa,灵敏度为23.14 µW/kPa,并且具有检测脉搏信号、吞咽、手势等的能力。基于光波导的压力传感器具有输出线性度好、集成密度高和易于构建阵列等优点。

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