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Time-reversible implementation of MASH for efficient nonadiabatic molecular dynamics

Time-reversible implementation of MASH for efficient nonadiabatic molecular dynamics

来源:Arxiv_logoArxiv
英文摘要

In this work, we describe various improved implementations of the mapping approach to surface hopping (MASH) for simulating nonadiabatic dynamics. These include time-reversible and piecewise-continuous integrators, which is only formally possible because of the deterministic nature of the underlying MASH equations of motion. The new algorithms allow for the use of either wave-function overlaps or nonadiabatic coupling vectors to propagate the spin, which encodes the electronic state. For a given time-step, $\Delta t$, it is demonstrated that the global error for these methods is $\mathcal{O}(\Delta t^2)$ compared to the $\mathcal{O}(\Delta t)$ error of standard implementations. This allows larger time-steps to be used for a desired error tolerance, or conversely, more accurate observables given a fixed value of $\Delta t$. The newly developed integrators thus provide further advantages for the MASH method, demonstrating that it can be implemented more efficiently than other surface-hopping approaches, which cannot construct time-reversible integrators due to their stochastic nature.

J. Amira Geuther、Jeremy O. Richardson、Kasra Asnaashari

物理学化学

J. Amira Geuther,Jeremy O. Richardson,Kasra Asnaashari.Time-reversible implementation of MASH for efficient nonadiabatic molecular dynamics[EB/OL].(2024-12-20)[2025-08-02].https://arxiv.org/abs/2412.15976.点此复制

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