首页> 外文期刊>The Journal of Chemical Physics >Basis set effects on the hyperpolarizability of CHCl_3: Gaussian-type orbitals, numerical basis sets and real-space grids
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Basis set effects on the hyperpolarizability of CHCl_3: Gaussian-type orbitals, numerical basis sets and real-space grids

机译:基集对CHCl_3的超极化性的影响:高斯型轨道,数值基础集和实际空间网格

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Calculations of the hyperpolarizability are typically much more difficult to converge with basis set size than the linear polarizability. In order to understand these convergence issues and hence obtain accurate ab initio values, we compare calculations of the static hyperpolarizability of the gas-phase chloroform molecule (CHCl_3) using three different kinds of basis sets: Gaussian-type orbitals, numerical basis sets, and real-space grids. Although all of these methods can yield similar results, surprisingly large, diffuse basis sets are needed to achieve convergence to comparable values. These results are interpreted in terms of local polarizability and hyperpolarizability densities. We find that the hyperpolarizability is very sensitive to the molecular structure, and we also assess the significance of vibrational contributions and frequency dispersion.
机译:与基极化规模相比,超极化率的计算通常要难于与基集大小收敛。为了理解这些收敛问题并因此获得准确的从头算值,我们使用三种不同的基集比较了气相氯仿分子(CHCl_3)的静态超极化性的计算:高斯型轨道,数值基集和真实空间网格。尽管所有这些方法都可以产生相似的结果,但是需要惊人的大的,分散的基集才能收敛到可比较的值。这些结果用局部极化率和超极化率密度来解释。我们发现超极化性对分子结构非常敏感,并且我们还评估了振动贡献和频率色散的重要性。

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