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Ab initio study of high tridymite by the formalism generator coordinate Hartree-Fock

机译:用形式主义生成器坐标Hartree-Fock从头开始研究高铁鳞矿

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摘要

The Generator Coordinate Hartree-Fock (GCHF) Method is applied to generate extended 14s 8p and 17s 11p Gaussian basis sets for the atoms O and Si, respectively. The role of the weight functions in the assessment of the numerical integration range of the GCHF is shown. The Gaussian basis sets are contracted to [6s4p] O atom and [8s5p] Si atom by the Dunning's segmented contraction scheme. To evaluate the quality of our contracted [6s4p] and [8s5p] bases in molecular calculations we accomplish calculations of total and orbital energies in the Hartree-Fock-Roothaan method for O_2 and SiO molecules. We compare the results obtained with the our (14s 8p) and (17s 11p) bases sets with the of 6-311G basis and with values from the literature. The addition of one d polarization function in the silicon basis and its utilization with the basis for oxygen leads to the calculation of electronic properties and IR Spectrum of high tridymite in space group D_(3d).
机译:应用生成器坐标Hartree-Fock(GCHF)方法分别为原子O和Si生成扩展的14s 8p和17s 11p高斯基集。显示了权重函数在评估GCHF数值积分范围中的作用。通过Dunning的分段收缩方案,高斯基集收缩为[6s4p] O原子和[8s5p] Si原子。为了在分子计算中评估我们收缩的[6s4p]和[8s5p]碱基的质量,我们使用Hartree-Fock-Roothaan方法对O_2和SiO分子进行了总能量和轨道能量的计算。我们将我们的(14s 8p)和(17s 11p)碱基组与6-311G的碱基组以及文献中的值进行比较。在硅基中添加一维极化函数及其在氧的基础上的利用,导致计算出了空间群D_(3d)中高鳞石英的电子性能和红外光谱。

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