In-Situ Non-Contact High-Temperature Measurement Of An Optical Fiber Up To The Glass Softening Point

OPTICS EXPRESS(2021)

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摘要
The optical fiber itself can function as a partially reflecting concentric cavity interferometer when transversely probed by a focused laser beam. In this study, the thermal response of the fiber heated by a CO2-laser beam was characterized by monitoring the back-scattered interference pattern. Simultaneous measurement of the Bragg wavelength shift of an inscribed, high-temperature stable fiber Bragg grating allowed for calibration of the temperature-dependent phase response of the interferometer. The presented technique allows for in-situ non-contact temperature measurements up to the glass softening point. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
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