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Polarizability in ionic liquid simulations causes hidden breakdown of linear response theory

机译:离子液体模拟中的极化性导致线性响应理论的隐藏分解

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The validity of linear response theory (LRT) in computer simulations of solvation dynamics, i.e. the time-dependent Stokes shift, has been debated widely during the last decades. Since the use of LRT is computationally less expensive than the calculation of the true nonequilibrium response, it is often invoked for large systems exhibiting a particularly slow solvation response, e.g. ionic liquids. In the case of ionic liquids, LRT does not only need to capture the correct overall dynamics of the system, but also the contributions and timescales of the respective cation and anion movement. We show by large scale computer simulations that the contribution of the permanent dipoles to the solvation response obeys LRT to some extent, whereas the induced contributions in polarizable simulations lead to a failure of LRT for the respective ion contributions.
机译:线性响应理论(LRT)在计算机模拟中的求解动态的有效性,即时间依赖的斯托克斯转班,在过去几十年中已广泛辩论。 由于LRT的使用比计算的计算方式比真正的非识别反应的计算昂贵,因此通常调用它对于表现出特别慢的溶剂化反应的大型系统,例如,它通常被调用。 离子液体。 在离子液体的情况下,LRT不仅需要捕获系统的正确整体动态,而且还需要捕获各种阳离子和阴离子运动的贡献和时间表。 我们通过大规模的计算机模拟显示永久性偶极子对溶剂化反应的贡献在一定程度上,而可极化模拟中的诱导贡献导致LRT对相应的离子贡献失败。

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