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Polymer photonic crystal fibre for sensor applications
David J. Webb
Aston Institute of Photonic Technologies (AiPT)
Research output
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Research Outputs
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Dive into the research topics of 'Polymer photonic crystal fibre for sensor applications'. Together they form a unique fingerprint.
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Mathematics
Photonic Crystal Fiber
100%
Sensor
58%
Polymers
51%
Fiber
42%
Silica
39%
Polymer Optical Fiber
27%
Photonic Crystal
20%
Young's Modulus
17%
Sensing
17%
Physical property
15%
Control Design
15%
Electric Field
14%
Water
12%
Flexibility
11%
Range of data
7%
Long Period Grating
1%
Optical Fiber Sensor
1%
Fiber Sensor
1%
Engineering & Materials Science
Photonic crystal fibers
87%
Polymers
36%
Fibers
34%
Sensors
25%
Silica
20%
Photonic crystals
15%
Organic chemicals
15%
Plastic optical fibers
14%
Fiber optic sensors
11%
Chemical properties
11%
Electric fields
9%
Physical properties
8%
Elastic moduli
8%
Geometry
6%
Water
5%
Physics & Astronomy
photonics
34%
sensors
30%
polymers
29%
fibers
28%
crystals
24%
silicon dioxide
10%
optical fibers
10%
illuminance
9%
chemical properties
7%
flexibility
6%
modulus of elasticity
5%
physical properties
5%
gratings
5%
electric fields
4%
water
4%
geometry
4%
Chemistry
Fiber
32%
Cladding
10%
Photonic Crystal
10%
Young's Modulus
8%
Electric Field
7%
Flexibility
6%
Strain
5%
Application
5%
Pressure
4%