论文标题

用于模拟分子振动激发的量子算法

Quantum Algorithm for Simulating Molecular Vibrational Excitations

论文作者

Jahangiri, Soran, Arrazola, Juan Miguel, Quesada, Nicolás, Delgado, Alain

论文摘要

分子中振动模式的激发会影响化学反应的结果,例如,通过为分子提供足够的能量来克服激活屏障。在这项工作中,我们引入了一种用于在振动过渡过程中模拟分子振动激发的量子算法。我们讨论如何使用分子数据对特殊用途的量子计算机进行编程,以优化振动过程,从而在过渡过程中会激发所需的模式。我们研究了这种激发对在光化学和机械化学振动转变期间吡咯和丁烷选择性键解离的影响。讨论了有关实验观察和经典模拟的结果。我们还引入了量子启发的经典算法,以模拟只有有限数量的模式的特殊情况下,在特殊情况下模拟了分子振动。

The excitation of vibrational modes in molecules affects the outcome of chemical reactions, for example by providing molecules with sufficient energy to overcome activation barriers. In this work, we introduce a quantum algorithm for simulating molecular vibrational excitations during vibronic transitions. We discuss how a special-purpose quantum computer can be programmed with molecular data to optimize a vibronic process such that desired modes get excited during the transition. We investigate the effect of such excitations on selective bond dissociation in pyrrole and butane during photochemical and mechanochemical vibronic transitions. The results are discussed with respect to experimental observations and classical simulations. We also introduce quantum-inspired classical algorithms for simulating molecular vibrational excitations in special cases where only a limited number of modes are of interest.

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