Microring structure for flexible polymer waveguide-based optical pressure sensing

Author:

Li Hongqiang12ORCID,Lin Zhilin1,Cao Lu3,Ren Feng4,Zhang Lizhen1,Wang Yingjie1,Zhao Ruina1,Song Zhenya1,Liu Yang5,Hu Youshan6,Li Changyu6,Zhang Shanshan17,Li Enbang8,Prades Joan Daniel9

Affiliation:

1. Tiangong University

2. Shaoxing Keqiao Research Institute of Tiangong University

3. Tianjin University

4. Wearable IC Intelligent Technology (Tianjin) Co., Ltd.

5. Tianjin Wavecreating Micro Intelligent Technology Co., Ltd.

6. Tianjin Photoelectric Juneng Communication Co., Ltd.

7. Nankai University

8. University of Wollongong

9. University of Barcelona

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.

Funder

National Natural Science Foundation of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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