Temperature Sensing with a Liquid-Filled Hollow-Core Photonic Crystal Fiber
Author:
Affiliation:
1. Institute of Physics Gleb Wataghin, University of Campinas,Campinas,Brazil
2. XLIM Institute, CNRS UMR 7252 University of Limoges,Limoges,France
Funder
FAPESP
CNPq
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10230902/10230913/10230983.pdf?arnumber=10230983
Reference8 articles.
1. Metal-Filled Embedded-Core Capillary Fibers as Highly Sensitive Temperature Sensors
2. Simultaneous measurement of strain, temperature and refractive index based on multimode interference, fiber tapering and fiber Bragg gratings
3. Opportunities and Challenges for Long-Distance Transmission in Hollow-Core Fibres
4. Near- and middle-ultraviolet reconfigurable Raman source using a record-low UV/visible transmission loss inhibited-coupling hollow-core fiber
5. Optofluidic Photonic Crystal Fiber Microreactors for In Situ Studies of Carbon Nanodot-Driven Photoreduction
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1. High-Temperature Sensing Using a Hollow-Core Fiber With Thick Cladding Tubes;IEEE Sensors Journal;2024-08-15
2. Standard single-mode fiber and hollow-core fiber sensitivity to acoustic vibrations in audible spectrum;Optical Sensing and Detection VIII;2024-06-20
3. Hollow-Core Fiber-Based Sensors: Recent Advancements in Brazil;2024 Latin American Workshop on Optical Fiber Sensors (LAWOFS);2024-05-20
4. Enhancing optical fiber performance through liquid infiltration in photonic crystal fiber;Journal of Electrical Engineering;2023-12-01
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