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Cavity ring down spectroscopy on C6H5 radical in a pulsed supersonic jet expansion discharge
Keith A. Freel
*
, Joonbum Park,
Ming-Chang Lin
, Michael Heaven
*
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應用化學系
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Conference article
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Keyphrases
Absorption Spectra
33%
Atmospheric Chemistry
33%
Cavity Ring-down Spectroscopy
100%
Combustion
33%
Constant Frequency
33%
Electrical Discharge
33%
Electronic States
33%
Environmental Health
33%
Formation Mechanism
66%
Formation Reaction
33%
High Sensitivity
33%
Interstellar Chemistry
33%
Jet Expansion
33%
Low Energy
33%
Phenyl Radical
33%
Polycyclic Aromatic Hydrocarbon Formation
66%
Polycyclic Aromatic Hydrocarbons
33%
Pulsed Jet
33%
Pulsed Supersonic Jet
100%
Reactive Intermediates
66%
Rotational Constants
33%
Rotational States
33%
Rotational Structure
33%
Rotational Temperature
33%
Sensitivity Method
33%
Spectroscopic Characterization
33%
Spectroscopic System
33%
Supersonic Jet Expansion
100%
Vibrational Frequencies
33%
Vibrational States
33%
Vibronic Bands
66%
Chemistry
Absorption Spectra
50%
Atmospheric Chemistry
50%
Cavity Ring-Down Spectroscopy
100%
Chemistry
50%
Electric Discharge
50%
Electronic State
50%
formation
100%
Jet
100%
Polycyclic Aromatic Hydrocarbon Formation
100%
Polycyclic Aromatic Hydrocarbons
50%
Reactive Intermediate
100%
Rotational Constant
50%
Rotational State
50%
Spectroscopy
50%
Vibrational Frequency
50%
Vibrational State
50%