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Updated: Jan 13, 2026

A Silicon-tipped Fiber-optic Sensing Platform with High Resolution and Fast Response
Published on: January 7, 2019
A novel fiber optic temperature sensor based on CCT measurement and tipped with a PDMS-YAG:Ce phosphor mixture
Jan Jargus1, Ondřej Životský2, Daniel Križan1
1Department of Telecommunications, VSB - Technical University of Ostrava, 70800 Ostrava, Czech Republic.
Abstract:
This paper presents a novel fiber-optic temperature sensor based on correlated color temperature (CCT) measurement. The sensor is formed by a homogeneous mixture of polydimethylsiloxane (PDMS) and cerium-doped yttrium aluminum garnet (YAG:Ce) phosphor, applied as a tip on the faces of an optical fiber pair. While YAG:Ce phosphors are commonly used in lighting and white light-emitting diode (WLED) technologies, their use in thermoluminescence and temperature sensing has been only minimally explored. We demonstrate that the temperature of a homogeneous PDMS-YAG:Ce mixture can be directly related to its CCT, and a highly linear dependence on temperature was identified across the studied range. The findings confirm that this CCT-based approach enables both contact and non-contact temperature measurement. The proposed optical sensors operate effectively from -60°C to 220°C (213-493 K), and their resistance to electromagnetic radiation was within a magnetic field range of -2 T to 2 T.

