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Nonadiabatic Dynamics with Coupled Trajectories.

Carlotta PieroniFederica Agostini
Published in: Journal of chemical theory and computation (2021)
In this paper, we discuss coupled-trajectory schemes for molecular-dynamics simulations of excited-state processes. New coupled-trajectory strategies to capture decoherence effects, revival of coherence and nonadiabatic interferences in long-time dynamics are proposed, and compared to independent-trajectory schemes. The working framework is provided by the exact factorization of the electron-nuclear wave function, and it exploits ideas emanating from various surface-hopping schemes. The new coupled-trajectory algorithms are tested on a one-dimensional two-state system using different model parameters which allow one to induce different dynamics. The benchmark is provided by the numerically exact solution of the time-dependent Schrödinger equation.
Keyphrases
  • molecular dynamics simulations
  • molecular dynamics
  • machine learning
  • density functional theory
  • molecular docking
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