Best practices for nonadiabatic molecular dynamics simulations
Antonio Prlj, Jack T. Taylor, Ji\v{r}\'i Jano\v{s}, Elise Lognon, Daniel Hollas, Petr Slav\'i\v{c}ek, Federica Agostini, Basile F. E. Curchod

TL;DR
This paper provides comprehensive best practices and guidelines for performing nonadiabatic molecular dynamics simulations, covering fundamentals, methods, electronic-structure considerations, and practical steps for users.
Contribution
It offers a detailed, user-oriented guide to nonadiabatic molecular dynamics, including methodological insights, practical advice, and checklists for successful simulations.
Findings
Clarifies key steps and methods for nonadiabatic simulations
Provides practical examples and a FAQ for users
Proposes a checklist for simulation procedures
Abstract
Nonadiabatic molecular dynamics simulations aim to describe the coupled electron-nuclear dynamics of molecules in excited electronic states. These simulations have been applied to understand a plethora of photochemical and photophysical processes, and, as a result, the number of nonadiabatic dynamics simulations has been growing significantly over the past decade. Yet, the field remains in its infancy, and a potential user may find it difficult to approach this type of simulation, given their complexity and the number of elements that should be considered for a (hopefully) successful nonadiabatic dynamics simulation. Nonadiabatic molecular dynamics relies on several key steps: finding a level of electronic-structure theory to describe the molecule in its Franck-Condon region and beyond, describing the photoexcitation process, selecting a method to perform the nonadiabatic dynamics, and…
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