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Dynamics of triplet states in beam-isolated benzaldehyde
Ofer Sneh,
Ori Cheshnovsky
*
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Corresponding author for this work
School of Chemistry
Tel Aviv University
Research output
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Article
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peer-review
27
Scopus citations
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Keyphrases
Active State
50%
Benzaldehyde
100%
Congestion
50%
Coupling Mechanism
50%
Coupling State
100%
Coupling Strength
50%
Dark State
50%
Ejection
100%
Electronic States
50%
Energy Intervals
50%
Excess Energy
50%
Laser-induced Phosphorescence
100%
Line Dynamics
50%
Line Profiles
50%
Non-radial
50%
Optically Active
50%
Radiationless Transition
50%
Radiative Rates
100%
Simultaneous Measurement
50%
Spectroscopic Data
50%
T1-T2
100%
Triplet State
100%
Vibrational Energy
50%
Vibronic Coupling
50%
Chemistry
Benzaldehyde
100%
Coupling Reaction
50%
Electronic State
50%
Purity
50%
Radiationless Transition
50%
Substance Spectroscopy
50%
Triplet State
100%
Vibrational Energy
50%
Vibronic Coupling
50%