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Precision Laser Micromachining of Hollow Core Negative Curvature Fibres
Catarina Cardoso Novo
School of Engineering & Physical Sciences
Institute of Photonics and Quantum Sciences
Research output
:
Thesis
›
Doctoral Thesis
Overview
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Dive into the research topics of 'Precision Laser Micromachining of Hollow Core Negative Curvature Fibres'. Together they form a unique fingerprint.
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INIS
fibers
100%
precision
100%
laser beam machining
100%
silica
44%
machining
33%
removal
22%
devices
22%
control
11%
length
11%
avoidance
11%
comparative evaluations
11%
interactions
11%
depth
11%
solids
11%
volume
11%
damage
11%
geometry
11%
processing
11%
optical fibers
11%
confinement
11%
hybrids
11%
optimization
11%
etching
11%
minimization
11%
cladding
11%
heat affected zone
11%
Engineering
Laser Beam Machining
100%
Femtosecond Laser
66%
Sensing Device
66%
Disruptions
33%
Processing Technique
33%
Micro Machining
33%
Step Process
33%
Internal Structure
33%
Deposited Material
33%
Heat Affected Zone
33%
Chemical Specie
33%
Silica Optical Fiber
33%
Material Science
Laser Beam Machining
100%
Silicon Dioxide
80%
Machining
40%
Fiber Optics
20%
Micromachining
20%