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Laser-induced incandescence applied to metal nanostructures
Randall L. Vander Wal
, Thomas M. Ticich
, Joseph R. West
John and Willie Leone Department of Energy & Mineral Engineering (EME)
Institute of Energy and the Environment (IEE)
Research output
:
Contribution to journal
›
Article
›
peer-review
49
Scopus citations
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Keyphrases
Laser-induced Incandescence
100%
Metal Nanostructures
100%
Mass Loss
33%
Metal Nanoparticles
33%
Nanoparticle Concentration
33%
Carbon Nanostructures
33%
Double Pulse
33%
Laser Fluence
33%
Vaporization
33%
Incandescence
33%
Fe-Ti
33%
Spectral Signature
33%
Ti-Mo
33%
Laser Wavelength
33%
Absorption Measurement
33%
Temporal Signatures
33%
Engineering
Nanomaterial
100%
Vaporization
100%
Mass Loss
50%
Carbon Nanostructure
50%
Laser Fluence
50%
Absorption Measurement
50%
Laser Wavelength
50%
Metal Nanoparticle
50%
Physics
Fluence
100%
Nanomaterial
100%
Vaporization
66%
Nanoparticle
33%
Carbon Nanostructure
33%
Chemistry
Vaporization
100%
Nanomaterial
100%
Metal Nanoparticle
50%
Carbon Nanostructure
50%
Chemical Engineering
Nanostructure
100%
Metal Nanoparticle
100%
Carbon Nanostructure
100%
Earth and Planetary Sciences
Fluence
100%
Nanomaterial
100%
Vaporization
66%