Planning > Contributions par auteur > Saab Mohamad

A quantum dynamics study of the benzopyran ring opening guided by laser pulses
Mohamad Saab  1@  
1 : Mohamad Saab  -  Site web
Fabien Gatti and Benjamin Lasorne
Dynamique Quantique Moléculaire - Spectroscopie Moléculaire Institut Charles GERHARDT - CNRS 5253 Université Montpellier 2 - Bât.15 - CC 1501 Place Eugène Bataillon 34 095 Montpellier Cedex -  France


The ring-opening photoisomerization of benzopyran, which occurs via a photochemical route involving a conical intersection, has been studied with quantum dynamics calculations using the multi-configuration time-dependent Hartree method (MCTDH).

We introduce a mechanistic strategy to control the conversion of benzopyran to merocyanine with laser pulses. We use a six-dimensional model developed in a previous work for the potential energy surfaces (PES) based on an extension of the vibronic-coupling Hamiltonian model (diabatization method by ansatz), which depends on the most active degrees of freedom.

The main objective of these quantum dynamics simulations is to provide a set of strategies that could help experimentalists to control the photoreactivity vs. photostability ratio (selectivity). In this work we present:(i) a pump-dump technique used to control the photostability, (ii) a two-step strategy to enhance the reactivity of the system: first, a pure vibrational excitation in the electronic ground state that prepares the system and, second, an ultraviolet excitation that brings the system to the first adiabatic electronic state; (iii) finally the effect of a non-resonant pulse (Stark effect) on the dynamics.


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