首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Finding optimal finite field strengths allowing for a maximum of precision in the calculation of polarizabilities and hyperpolarizabilities
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Finding optimal finite field strengths allowing for a maximum of precision in the calculation of polarizabilities and hyperpolarizabilities

机译:寻找最佳的有限场强,以便在极化率和超极化率的计算中获得最大的精度

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摘要

The finite field method, widely used for the calculation of static dipole polarizabilities or the first and second hyperpolarizabilities of molecules and polymers, is thoroughly explored. The application of different field strengths and the impact on the precision of the calculations were investigated. Borders could be defined and characterized, establishing a range of feasible field strengths that guarantee reliable numerical results. The quality of different types of meshes to screen the feasible region is assessed. Extrapolation schemes are presented that reduce the truncation error and allow to increase the precision of finite field calculations by one to three orders of magnitude.
机译:彻底探索了广泛用于计算分子和聚合物的静态偶极极化率或第一和第二超极化率的有限域方法。研究了不同场强的应用及其对计算精度的影响。可以定义和表征边界,从而建立一定范围的可行场强,以保证可靠的数值结果。评估用于筛选可行区域的不同类型网格的质量。提出了可以减少截断误差并允许将有限域计算的精度提高一到三个数量级的外推方案。

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