Voltage, thermal and magnetic field fiber sensors based on magnetic nanoparticles-doped photonic liquid crystal fibers

Author:

Zhang Rui,Du Wenyu,Shao Fei,Li Siqi,Kuai Yan,Cao Zhigang,Xu Feng,Liu Yu,Luo Yanhua1ORCID,Peng Gang-Ding2,Xie Kang3,Yu BenliORCID,Hu ZhijiaORCID

Affiliation:

1. Shanghai University

2. University of New South Wales

3. Zaozhuang University

Abstract

In this article, highly sensitive voltage, thermal and magnetic field fiber sensors were obtained in magnetic nanoparticles-doped E7 liquid crystals filled into photonic crystal fibers (PLCF). The voltage and temperature sensitivity reached at 12.598 nm/V and -3.874 nm/°C, respectively. The minimum voltage response time is 48.2 ms. The phase transition temperature Tc of liquid crystal with magnetic dopant was reduced from 60 °C to 46 °C. The magnetic field sensor based on magnetic nanoparticles-doped PLCF were obtained with sensitivity of 118.2 pm/mT from 400 to 460 mT.

Funder

National Natural Science Foundation of China

Excellent Scientific Research and Innovation Team of Anhui Province

Key Research and Development Plan of Anhui Province

Innovation project for the Returned Overseas Scholars of Anhui Province

The University Synergy Innovation Program of Anhui Province

Anhui Project

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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