4.6 Article

Time-resolved predissociation of the vibrationless level of the B state of CH3I

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 13, Issue 41, Pages 18485-18496

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c1cp22057h

Keywords

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Funding

  1. ANR COCOMOUV
  2. ANR HARMODYN
  3. L'Universite Paul Sabatier via three different BQR
  4. CNRS
  5. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences, Division of Chemical Sciences, Geosciences, and Biosciences [DE-AC02-06CH11357]
  6. European Union [MOLCOTUV-041732]
  7. European Union from the ITN-ICONIC

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The predissociation dynamics of the vibrationless level of the first Rydberg 6s (B E-1) state of CH3I has been studied by femtosecond-resolved velocity map imaging of both the CH3 and I photofragments. The kinetic energy distributions of the two fragments have been recorded as a function of the pump-probe delay, and as a function of excitation within the umbrella and stretching vibrational modes of the CH3 fragment. These observations are made by using (2 + 1) Resonant Enhanced MultiPhoton Ionization (REMPI) via the 3p(z)(2)A ''(2) state of CH3 to detect specific vibrational levels of CH3. The vibrational branching fractions of the CH3 are recovered by using the individual vibrationally state-selected CH3 distributions to fit the kinetic energy distribution obtained by using nonresonant multiphoton ionization of either the I or the CH3 fragment. The angular distributions and rise times of the two fragments differ significantly. These observations can be rationalized through a consideration of the alignment of the CH3 fragment and the effect of this alignment on its detection efficiency. Two additional dissociation channels are detected: one associated with Rydberg states near 9.2 eV that were observed previously in photoelectron studies, and one associated with photodissociation of the parent cation around 15 eV.

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