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Nanosecond spectroscopic measurement and laser ablation of an optically trapped latex particle
H. Misawa
*
, M. Koshioka, K. Sasaki, N. Kitamura,
Hiroshi Masuhara
*
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Keyphrases
Spectroscopic Measurement
100%
Laser Ablation
100%
Pyrene
100%
Latex Particles
100%
Latex
100%
YAG Laser
75%
Laser Trapping
50%
Ablation
50%
Poly(methyl methacrylate)
50%
Time-resolved Emission Spectroscopy
50%
Emission Spectrum
25%
Laser Power
25%
Pulsed Laser
25%
Time-resolved
25%
Experimental Protocol
25%
Monomer Fluorescence
25%
Medicine and Dentistry
Laser Surgery
100%
Spectroscopy
100%
Pyrene Derivative
100%
Latex
100%
Emission Spectroscopy
50%
Poly(methyl Methacrylate)
50%
Monomer
25%
Engineering
Nanosecond
100%
Latex
100%
Laser Power
50%
Emission Spectra
50%
Nanosecond Time
50%
Monomer
50%
Pulsed Laser
50%
Chemistry
Laser Ablation
100%
Spectroscopy
100%
Emission Spectroscopy
66%
Methacrylate
66%
Emission Spectra
33%
Monomer
33%
Illumination
33%
Pharmacology, Toxicology and Pharmaceutical Science
Pyrene Derivative
100%
Latex
100%
Poly(methyl Methacrylate)
50%
Monomer
25%
Material Science
Laser Ablation
100%
Emission Spectroscopy
66%