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Analysis of optical damage mechanisms in hollow-core waveguides delivering nanosecond pulses from a Q-switched Nd: YAG laser
J. P. Parry
, T. J. Stephens
,
J. D. Shephard
, J. D C Jones
,
D. P. Hand
School of Engineering & Physical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
17
Citations (Scopus)
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Dive into the research topics of 'Analysis of optical damage mechanisms in hollow-core waveguides delivering nanosecond pulses from a Q-switched Nd: YAG laser'. Together they form a unique fingerprint.
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INIS
damage
100%
pulses
100%
lasers
100%
waveguides
100%
neodymium lasers
100%
q-switching
100%
fibers
66%
peak power
66%
reflective coatings
66%
delivery
33%
comparative evaluations
33%
thickness
33%
tubes
33%
glass
33%
capillaries
33%
beams
33%
energy
33%
coatings
33%
power
33%
polarization
33%
harmonics
33%
alignment
33%
Engineering
Peak Power
100%
Nanosecond
100%
Core Diameter
100%
Damage Mechanism
100%
Core Waveguide
100%
Coating Thickness
50%
Pulse Energy
50%
Guided Mode
50%
Step Index
50%
Harmonics
50%
Capillary Tube
50%
Index Fiber
50%
Material Science
Waveguide
100%
Reflective Coating
100%
Q-Switched Pulse
50%