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Configuration space partitioning and matrix buildup scaling for the vibrational configuration interaction method

机译:振动配置相互作用方法的配置空间划分和矩阵建立缩放

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摘要

The accurate computation of anharmonic vibrational states for medium to large molecules is a requirement for the detailed understanding of nonlinear multidimensional infrared spectra and the dynamical information encoded in them. The vibrational configuration interaction (VCI) method constitutes a particularly promising tool in this respect. It is generally hampered though by its unfavorable scaling with respect to system size. We analyze the scaling behavior of several well-known as well as some new approximate VCI schemes in detail, which are complementary to the class of configuration selection schemes developed recently. We find that the combination of a configuration space partitioning, possibly based on configuration selection, with energetic thresholding and resonance screening provides an efficient scheme for the reduction of computational effort involved in VCI calculations while at the same time maintaining sufficient accuracy for the vibrational energies.
机译:准确计算中到大分子的非谐振动态是详细了解非线性多维红外光谱及其中编码的动力学信息的要求。在这方面,振动配置相互作用(VCI)方法构成了一种特别有前途的工具。尽管它由于相对于系统大小的不利缩放而通常受到阻碍。我们详细分析了几种知名的以及一些新的近似VCI方案的缩放行为,这些方案是对最近开发的配置选择方案的补充。我们发现,可能基于配置选择的配置空间划分与高能阈值和共振筛选的结合,为减少VCI计算中涉及的计算工作量提供了一个有效的方案,同时又为振动能量保持了足够的精度。

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