Vibronic correlations in molecular strong field dynamics

Fuente: arXiv
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Hauptverfasser: Labeye, Marie, Lévêque, Camille, Risoud, François, Maquet, Alfred, Caillat, Jérémie, Taïeb, Richard
Format: Preprint
Veröffentlicht: 2024
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author Labeye, Marie
Lévêque, Camille
Risoud, François
Maquet, Alfred
Caillat, Jérémie
Taïeb, Richard
author_facet Labeye, Marie
Lévêque, Camille
Risoud, François
Maquet, Alfred
Caillat, Jérémie
Taïeb, Richard
contents We investigate ultrafast vibronic dynamics triggered by intense femtosecond infrared pulses in small molecules. Our study is based on numerical simulations performed with 2D model molecules, and analyzed in the perspective of the renown Lochfrass and Bond-Softening models. We give a new interpretation of the observed nuclear wave packet dynamics, with a focus on the phase of the bond oscillations. Our simulations also reveal intricate features in the field-induced nuclear motion that are not accounted for by existing models. Our analyses assign these features to strong dynamic correlations between the active electron and the nuclei, which significantly depend on the carrier envelope phase of the pulse, even for relatively ``long'' pulses, which should make them experimentally observable.
format Preprint
id arxiv_https___arxiv_org_abs_2403_08034
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Vibronic correlations in molecular strong field dynamics
Labeye, Marie
Lévêque, Camille
Risoud, François
Maquet, Alfred
Caillat, Jérémie
Taïeb, Richard
Chemical Physics
We investigate ultrafast vibronic dynamics triggered by intense femtosecond infrared pulses in small molecules. Our study is based on numerical simulations performed with 2D model molecules, and analyzed in the perspective of the renown Lochfrass and Bond-Softening models. We give a new interpretation of the observed nuclear wave packet dynamics, with a focus on the phase of the bond oscillations. Our simulations also reveal intricate features in the field-induced nuclear motion that are not accounted for by existing models. Our analyses assign these features to strong dynamic correlations between the active electron and the nuclei, which significantly depend on the carrier envelope phase of the pulse, even for relatively ``long'' pulses, which should make them experimentally observable.
title Vibronic correlations in molecular strong field dynamics
topic Chemical Physics
url https://arxiv.org/abs/2403.08034