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arxiv: 1608.08768 · v2 · pith:LKIDBBLMnew · submitted 2016-08-31 · ⚛️ physics.chem-ph · physics.atom-ph· quant-ph

Surface hopping methodology in laser-driven molecular dynamics

classification ⚛️ physics.chem-ph physics.atom-phquant-ph
keywords surfacesdynamicshoppingmolecularsurfaceborn-oppenheimerexactlaser-driven
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A theoretical justification of the empirical surface hopping method for the laser-driven molecular dynamics is given utilizing the formalism of the exact factorization of the molecular wavefunction [Abedi et al., PRL $\textbf{105}$, 123002 (2010)] in its quantum-classical limit. Employing an exactly solvable $\textrm H_2^{\;+}$-like model system, it is shown that the deterministic classical nuclear motion on a single time-dependent surface in this approach describes the same physics as stochastic (hopping-induced) motion on several surfaces, provided Floquet surfaces are applied. Both quantum-classical methods do describe reasonably well the exact nuclear wavepacket dynamics for extremely different dissociation scenarios. Hopping schemes using Born-Oppenheimer surfaces or instantaneous Born-Oppenheimer surfaces fail completely.

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