Single-mode tellurite optical fiber for temperature measurement based on the self-phase modulation effect

Author:

Cheng Tonglei12ORCID,Chen Xiaoyu1,Gao Yuanhongliu1,Zhang Fan1,Li Bin1,Yan Xin1,Zhang Xuenan1,Wang Fang1ORCID,Suzuki Takenobu3,Ohishi Yasutake3

Affiliation:

1. Northeastern University

2. Hebei Key Laboratory of Micro-Nano Precision Optical Sensing and Measurement Technology

3. Toyota Technological Institute

Abstract

In this paper, the self-phase modulation (SPM) effect in a double-cladding single-mode tellurite optical fiber (DC-SMTOF) was exploited for temperature sensing. The DC-SMTOF was fabricated based on a TeO2–ZnO–Li2O–Bi2O3 (TZLB) glass material that has a thermo-optical coefficient as high as –16.4×10−6/°C. The temperature sensing performance was evaluated by detecting the 3-dB bandwidth of the SPM spectra with the variation of temperature at different pump wavelength and different average pump power. The temperature sensitivity was obtained to be –2.971 nm/°C with a resolution of 0.0168°C. Both simulation and experiment confirmed that a longer pump wavelength and higher average pump power will result in a higher temperature sensitivity. To the best of our knowledge, this is the first study concerning SPM-based temperature sensing in a tellurite optical fiber. The proposed temperature sensor has a compact structure, and it can realize temperature sensing of high sensitivity without any fiber modification. This work opens the road toward explorations of a novel temperature sensing technology combined with soft glass fibers and nonlinear phenomenon, and is expected to deepen our understanding in the application of these complex nonlinear phenomena.

Funder

China Postdoctoral Science Foundation

111 Project

Hebei Natural Science Foundation under Grant

Natural Science Foundation of Science and Technology Department of Liaoning Province

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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