Time-resolving the UV-initiated photodissociation dynamics of OCS
arXiv:2010.09406 · doi:10.1039/D0FD00119H
Abstract
We present a time-resolved study of the photodissociation dynamics of OCS after UV-photoexcitation at nm. OCS molecules () were primarily excited to the and the Renner-Teller components of the and states. Dissociation into CO and S fragments was observed through time-delayed strong-field ionisation and imaging of the kinetic energy of the resulting CO and S fragments by intense nm laser pulses. Surprisingly, fast oscillations with a period of fs were observed in the S channel of the UV dissociation. Based on wavepacket-dynamics simulations coupled with a simple electrostatic-interaction model, these oscillations do not correspond to the known highly-excited rotational motion of the leaving CO fragments, which has a timescale of fs. Instead, we suggest to assign the observed oscillations to the excitation of vibrational wavepackets in the or states of the molecule that predissociate to form S photoproducts.
25 pages, 5 figures