Quantum Dynamics and Laser Control for Photochemistry

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The central subject of this thesis is the theoretical description of ultrafast dynamical processes in molecular systems of chemical interest and their control by laser pulses. This work encompasses different cutting-edge methods in quantum chemistry, quantum dynamics and for the rigorous description of the interaction of light and matter at the molecular level. It provides a general quantum mechanical framework for the description of chemical processes guided by laser pulses, in particular near conical intersections, i.e. geometries where the nuclear and electronic motions couple and the molecule undergoes non-adiabatic (or non-Born-Oppenheimer) dynamics. In close collaboration with experimentalists, the author succeeds in making a decisive step to link and to apply quantum physics to chemistry by transferring state of the art techniques and concepts developed in physics to chemistry, such as “light dressed atoms and molecules” and “adiabatic Floquet theory”. He applies these techniques in three prototypic model systems (aniline, pyrazine and NHD2) using high-level electronic structure calculations. Readers will enjoy the comprehensive and accessible introduction to the topic and methodology, as well as the clear structure of the thesis.

Author(s): Matthieu Sala (auth.)
Series: Springer Theses
Edition: 1
Publisher: Springer International Publishing
Year: 2016

Language: English
Pages: XIII, 189
Tags: Theoretical and Computational Chemistry; Quantum Physics; Math. Applications in Chemistry; Atoms and Molecules in Strong Fields, Laser Matter Interaction; Computer Applications in Chemistry

Front Matter....Pages i-xiii
General Introduction....Pages 1-10
Front Matter....Pages 11-11
Basic Concepts and Methodology....Pages 13-40
Exploration of the Potential Energy Landscape of Aniline Using CASSCF and XMCQDPT2 Electronic Structure Calculations....Pages 41-65
Theory of Nuclear Quantum Dynamics Simulations....Pages 67-86
The Role of the Low-Lying \(n\pi ^*\) States on the Photophysics of Pyrazine....Pages 87-104
Front Matter....Pages 105-105
Theoretical Tools for the Description of Strong Field Laser-Molecule Interaction....Pages 107-127
Laser Control of the Radiationless Decay in Pyrazine Using the Dynamic Stark Effect....Pages 129-148
Laser Driven Tunneling Dynamics in NHD \(_2\) ....Pages 149-184
Conclusion....Pages 185-189