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Ultrafast dynamics with the exact factorization

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arxiv 2104.00738 v1 pith:BW6WUFIC submitted 2021-04-01 physics.chem-ph physics.comp-ph

classification physics.chem-phphysics.comp-ph
keywords dynamicsexactfactorizationapproachbeenfieldprocessesquantum-classical
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The exact factorization of the time-dependent electron-nuclear wavefunction has been employed successfully in the field of quantum molecular dynamics simulations for interpreting and simulating light-induced ultrafast processes. In this work, we summarize the major developments leading to the formulation of a trajectory-based approach, derived from the exact factorization equations, capable of dealing with nonadiabatic electronic processes, and including spin-orbit coupling and the non-perturbative effect of an external time-dependent field. This trajectory-based quantum-classical approach has been dubbed coupled-trajectory mixed quantum-classical (CT-MQC) algorithm, whose performance is tested here to study the photo-dissociation dynamics of IBr.

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