Issue 48, 2024

Population transfer between degenerate continuum states via impulsive stimulated Raman scattering: application to the control of HOD photofragmentation

Abstract

This work proposes a new scheme for the coherent control of the branching ratio of photodissociation reactions. HOD's photodissociation in the first electronic-excited state illustrates the idea. The scheme involves the induction of quantum interference between the continuum eigenstates of the excited state through interaction with a non-resonant NIR ultrashort laser pulse, subsequent to electronic excitation. A high-level, frequency-dependent excited state polarizability surface of HOD is determined, in order to model the non-resonant coupling between the laser pulse and molecule. The results of this scheme on the control of the branching ratio between OD + H and OH + D are presented, as well as an analysis of the interaction between the ultrashort pulses and the excited-state eigenstates. The understanding of the degenerate nature of these continuum states is shown to be crucial for a correct description of the processes that lead to a change in the reaction's outcome, and is further discussed through an exploration of a model system.

Graphical abstract: Population transfer between degenerate continuum states via impulsive stimulated Raman scattering: application to the control of HOD photofragmentation

Article information

Article type
Paper
Submitted
22 Jul 2024
Accepted
22 Nov 2024
First published
22 Nov 2024

Phys. Chem. Chem. Phys., 2024,26, 29846-29852

Population transfer between degenerate continuum states via impulsive stimulated Raman scattering: application to the control of HOD photofragmentation

P. D. Cin and N. E. Henriksen, Phys. Chem. Chem. Phys., 2024, 26, 29846 DOI: 10.1039/D4CP02900C

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