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The development of effective classical potentials and the quantum statistical mechanical second virial coefficient of water

机译:有效经典势的发展与水的量子统计力学第二维里系数

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The second virial coefficient of water is calculated at low temperature by considering full quantum statistical mechanical effects. At low enough temperatures experimental results are limited and molecular models can be used for accurate extrapolation. In doing so, one must separate deficiencies of the intermolecular potential from limitations of the simulation methodology such as the neglect of higher-order quantum corrections. Effective classical potentials may be used to understand the limitations of classical simulation. In this work we calculate the exact quantum statistical mechanical second virial coefficient and find that using a semiclassical form for the effective classical potential we are able to nearly reproduce the exact quantum statistical results. This approach provides a significant improvement to conventional first order expansions of the second virial coefficient. (C) 2002 American Institute of Physics. [References: 50]
机译:通过考虑全量子统计力学效应,可在低温下计算水的第二维里系数。在足够低的温度下,实验结果是有限的,分子模型可用于精确外推。为此,必须将分子间电势的不足与模拟方法的局限性(例如忽略高阶量子校正)区分开来。有效的经典势能可用于了解经典模拟的局限性。在这项工作中,我们计算了精确的量子统计力学第二维里系数,并发现使用半经典形式的有效经典势能几乎可以重现精确的量子统计结果。该方法对第二维里系数的常规一阶展开提供了显着的改进。 (C)2002美国物理研究所。 [参考:50]

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