首页> 外文期刊>The Journal of Chemical Physics >ELECTRON CORRELATION EFFECTS ON THE STATIC LONGITUDINAL SECOND HYPERPOLARIZABILITY OF POLYMERIC CHAINS - MOLLER-PLESSET PERTURBATION THEORY INVESTIGATION OF HYDROGEN MODEL CHAINS
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ELECTRON CORRELATION EFFECTS ON THE STATIC LONGITUDINAL SECOND HYPERPOLARIZABILITY OF POLYMERIC CHAINS - MOLLER-PLESSET PERTURBATION THEORY INVESTIGATION OF HYDROGEN MODEL CHAINS

机译:电子关联对高分子链静态纵向第二超极化的影响-氢模型链的莫勒-珀尔兹摄动理论研究

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Ab initio calculations of the static longitudinal second hyperpolarizability of molecular hydrogen model chains have been performed at different levels of approximation to investigate the effects of including electron correlation, as well as the variation of these effects as a function of the atomic basis set. Inclusion of electron correlation within the Moller-Plesset schemes limited to second (MP2), third (MP3), and fourth (MP4) order in electron-electron interactions leads to an increase of the longitudinal second hyperpolarizability per unit cell which is mainly due to the second-order correction provided that a sufficiently extended basis set is used. Indeed, whereas the basis set does not influence significantly the UCHF and CHF values, a too small basis set underestimates the positive second-order contribution, overestimates the negative third-order contribution and leads to a fourth-order contributions having an incorrect sign. This positive electron correlation correction for the second hyperpolarizability is opposite to the negative correction brought to the static longitudinal polarizability per unit cell for which the CHF level with a split-valence basis set provides reliable polarizability estimates. The present investigation points out that good estimates of the second hyperpolarizability are already obtained by using the MP2 procedure with a sufficiently extended basis set. (C) 1996 American Institute of Physics. [References: 79]
机译:分子氢模型链的静态纵向第二超极化性的从头算已经在不同的近似水平上进行,以研究包括电子相关性的效应以及这些效应随原子基集的变化。在Moller-Plesset方案中将电子相关性包含在电子-电子相互作用中仅限于第二阶(MP2),第三阶(MP3)和第四阶(MP4)的情况下,会导致每个晶胞的纵向第二超极化性增加,这主要是由于如果使用了充分扩展的基集,则进行二阶校正。的确,尽管基集不会显着影响UCHF和CHF值,但是基集太小会低估正二阶贡献,会高估负三阶贡献并导致符号不正确的四阶贡献。对于第二种超极化性的这种正电子相关校正与对每单位晶胞的静态纵向极化率带来的负校正相反,对于该校正,具有分裂价基集的CHF级别提供了可靠的极化率估计。本研究指出,通过使用具有足够扩展的基础集的MP2程序,已经获得了对第二超极化能力的良好估计。 (C)1996年美国物理研究所。 [参考:79]

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