Direct imaging of coherent bending vibrations in a triatomic molecule

ORAL

Abstract

Light-induced vibrational wave packets play a fundamental role in many types of molecular dynamics and have been studied extensively. However, most studies using conventional mass spectrometry provide only indirect information on evolving molecular structures. In this work, we show that one can directly map coherent bending vibrations in a laser-ionized small molecule with excellent temporal resolution using Coulomb explosion imaging (CEI). We use a strong 28-fs near-infrared (NIR) laser pulse to ionize SO2 and induce vibrational wave packets in its cationic states. A second NIR pulse of higher intensity is then used to further ionize and/or dissociate the molecules, and the ionic products are detected in coincidence using a COLTRIMS apparatus. We focus on mapping the O-S-O bending vibrations and find that this motion influences many observables in the multi-dimensional coincidence data. We also show that the bending-mode vibration can be observed directly in the delay-dependent KER spectra and angular distributions of high-charge-states channels. Our observations are supported by classical Coulomb explosion simulations.

*Supported by the Chemical Sciences, Geosciences, and Biosciences Division, Office of Basic Energy Sciences, Office of Science, US Department of Energy under Awards No. DE-FG02-86ER13491 and DE-SC0020276 (SB), and by the National Science Foundation grant no. PHYS-1753324 (ASV).

Publication: We are planning to write a paper/ papers from this work.

Presenters

  • Huynh Van Sa V Lam

    • Kansas State University

Authors

  • Huynh Van Sa V Lam

    • Kansas State University
  • Anbu S Venkatachalam

    • Kansas State University
  • Sina Jacob

    • Goethe-Universität Frankfurt am Main
  • Surjendu Bhattacharyya

    • J.R. Macdonald Laboratory, Kansas State University
    • J.R. Macdonald Laboratory, Department of Physics, Kansas State University, Manhattan, KS, USA
    • Kansas State University
  • Keyu Chen

    • Kansas State University
  • Vinod Kumarappan

    • Kansas State University
  • Daniel Rolles

    • J.R. Macdonald Laboratory, Kansas State University
    • J.R. Macdonald Laboratory, Department of Physics, Kansas State University, Manhattan, KS, USA
    • Kansas State
    • Kansas State University
  • Artem Rudenko

    • J.R. Macdonald Laboratory, Kansas State University
    • J.R. Macdonald Laboratory, Department of Physics, Kansas State University, Manhattan, KS, USA
    • Kansas State University