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Harnessing the fiber fuse for sensing applications
Optics Express
|May 3, 2014
Summary
A novel refractive index sensor utilizing fiber fuse technology offers high sensitivity for detecting changes in refractive index (RI). This method enables mass production of cost-effective fiber optic sensors.
Area of Science:
- Photonics and Optical Sensing
- Materials Science
- Fiber Optic Technology
Background:
- Refractive index sensors are crucial for various applications, including chemical detection and environmental monitoring.
- Existing fiber optic sensors face challenges in mass production and cost-effectiveness.
Purpose of the Study:
- To propose and demonstrate a simple refractive index sensor using the fiber fuse technique.
- To compare its sensitivity with a hetero-core structure fiber sensor.
- To explore the potential of fiber fuse technology for mass-producing optical fiber sensors.
Main Methods:
- A simple fiber optic sensor was fabricated by incorporating a small section of fiber damaged by the fiber fuse technique.
- A hetero-core structure fiber sensor (no-core fiber between single-mode fibers) was also fabricated for comparison.
- The sensitivity of both sensors was measured in terms of nanometers per refractive index unit (nm/RIU).
Main Results:
- The fiber fuse-based sensor demonstrated a high sensitivity of 350.58 nm/RIU.
- The hetero-core structure sensor showed a sensitivity of 157.29 nm/RIU.
- The fiber fuse technique allows for the incorporation of damaged fiber sections for sensor fabrication.
Conclusions:
- The proposed fiber fuse-based sensor exhibits significantly higher sensitivity compared to the hetero-core structure sensor.
- The fiber fuse technique is a viable method for the mass production of optical fiber sensors.
- This represents the first application of periodic damage tracks formed by fiber fuse for optical fiber sensing.

