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Excited state dynamics in SO_2. I. Bound state relaxation studied by time-resolved photoelectron-photoion coincidence spectroscopy
- Source :
- J. Chem. Phys., The Journal of Chemical Physics, 140 (20)
- Publication Year :
- 2014
-
Abstract
- The excited state dynamics of isolated sulfur dioxide molecules have been investigated using the time-resolved photoelectron spectroscopy and time-resolved photoelectron-photoion coincidence techniques. Excited state wavepackets were prepared in the spectroscopically complex, electronically mixed (B̃)(1)B1/(Ã)(1)A2, Clements manifold following broadband excitation at a range of photon energies between 4.03 eV and 4.28 eV (308 nm and 290 nm, respectively). The resulting wavepacket dynamics were monitored using a multiphoton ionisation probe. The extensive literature associated with the Clements bands has been summarised and a detailed time domain description of the ultrafast relaxation pathways occurring from the optically bright (B̃)(1)B1 diabatic state is presented. Signatures of the oscillatory motion on the (B̃)(1)B1/(Ã)(1)A2 lower adiabatic surface responsible for the Clements band structure were observed. The recorded spectra also indicate that a component of the excited state wavepacket undergoes intersystem crossing from the Clements manifold to the underlying triplet states on a sub-picosecond time scale. Photoelectron signal growth time constants have been predominantly associated with intersystem crossing to the (c̃)(3)B2 state and were measured to vary between 750 and 150 fs over the implemented pump photon energy range. Additionally, pump beam intensity studies were performed. These experiments highlighted parallel relaxation processes that occurred at the one- and two-pump-photon levels of excitation on similar time scales, obscuring the Clements band dynamics when high pump beam intensities were implemented. Hence, the Clements band dynamics may be difficult to disentangle from higher order processes when ultrashort laser pulses and less-differential probe techniques are implemented.
- Subjects :
- time-resolved photoelectron spectroscopy
inter-system crossings
photoelectron spectroscopy
General Physics and Astronomy
Photoelectron photoion coincidence spectroscopy
photoelectron-photoion coincidence
Ionization
Photons
Photoelectron spectra
Manifolds
Excitation energies
010402 general chemistry
01 natural sciences
X-ray photoelectron spectroscopy
0103 physical sciences
Bound state
Physics::Atomic and Molecular Clusters
photoelectrons
sulfur dioxide
photons
Physical and Theoretical Chemistry
Triplet state
Electronic band structure
excited states
multiphoton ionisation
010304 chemical physics
Chemistry
time domain description
Relaxation (NMR)
photoelectron signals
ultrafast relaxation
dynamics
ultrashort pulses
0104 chemical sciences
3. Good health
Photoexcitation
excited-state dynamics
Excited state
ddc:540
Atomic physics
probes
wave packets
Subjects
Details
- Volume :
- 140
- Database :
- OpenAIRE
- Journal :
- J. Chem. Phys.
- Accession number :
- edsair.doi.dedup.....cb48752cf3d8b6e7963926a5db043145