Related Experiment Video
Updated: Aug 25, 2025

Fabrication and Testing of Photonic Thermometers
Published on: October 24, 2018
Temperature and Humidity Sensitivity of Polymer Optical Fibre Sensors Tuned by Pre-Strain
Andreas Pospori1, Andreas Ioannou1, Kyriacos Kalli1
1Photonics and Optical Sensors Research Laboratory, Cyprus University of Technology, Saripolou 33, 3036 Limassol, Cyprus.
Abstract:
Polymer optical fibre Bragg grating (POFBG) sensors are of high interest due to their enhanced fracture toughness, flexibility in bending, and sensitivity in stress and pressure monitoring applications compared to silica-based sensors. The POFBG sensors can also detect humidity due to the hydrophilic nature of some polymers. However, multi-parameter sensing can cause cross-sensitivity issues in certain applications if the temperature and humidity measurements are not adequately compensated. In this work, we demonstrate the possibility of selectively tuning sensors' temperature and humidity sensitivities to the desired level by applying a certain amount of fibre pre-strain. The temperature sensitivity of POFBG sensors fabricated in perfluoropolymers (CYTOP) can be selectively tuned from positive to negative values, having the option for insensitivity in specific temperature ranges depending on the amount of the applied pre-strain. The humidity sensitivity of sensors can also be changed from positive values to insensitivity. The importance of thermal annealing treatment of POFBG sensors for improved repeatability in temperature measurements is also reported. An array of 4 multiplexed POFBGs was fabricated, and each sensor was pre-strained accordingly to demonstrate the possibility of having targeted temperature and humidity sensitivities along the same fibre.
Related Concept Videos
Thermal Strain
Measurements of Strain
Strain and Elastic Modulus
Thermal expansion and Thermal stress: Problem Solving
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in...
Temperature Dependent Deformation
Hooke's Law

