首页> 外文OA文献 >Static and Dynamical Correlation in Diradical Molecules by Quantum Monte Carlo Using the Jastrow Antisymmetrized Geminal Power Ansatz
【2h】

Static and Dynamical Correlation in Diradical Molecules by Quantum Monte Carlo Using the Jastrow Antisymmetrized Geminal Power Ansatz

机译:量子蒙特卡洛使用Jastrow反对称的Geminal Power Ansatz求解双自由基分子的静态和动态相关性

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Diradical molecules are essential species involved in many organic and inorganic chemical reactions. The computational study of their electronic structure is often challenging, because a reliable description of the correlation, and in particular of the static one, requires multireference techniques. The Jastrow correlated antisymmetrized geminal power (JAGP) is a compact and efficient wave function ansatz, based on the valence-bond\udrepresentation, which can be used within quantum Monte Carlo (QMC) approaches. The AGP part can be rewritten in terms of molecular orbitals, obtaining a multideterminant expansion with zero-seniority number. In the present work we demonstrate the capability of the JAGP ansatz to correctly describe the electronic structure of two diradical prototypes: the orthogonally twisted ethylene, C2H4, and the methylene, CH2, representing respectively a omosymmetric and heterosymmetric system. In the orthogonally twisted ethylene, we find a degeneracy of π and π* molecular orbitals, as correctly predicted by multireference procedures, and our best estimates of the twisting barrier, using respectively the variational Monte Carlo (VMC) and the lattice regularized diffusion Monte Carlo (LRDMC) methods, are 71.9(1) and 70.2(2) kcal/mol, in very good agreement with the high-level MR-CISD+Q value, 69.2 kcal/mol. In the methylene we estimate an adiabatic triplet−singlet (X̃3B1−a1̃ A1) energy gap of 8.32(7) and 8.64(6) kcal/mol, using respectively VMC and LRDMC, consistently with the experimental-derived finding for Te, 9.363 kcal/mol. On the other hand, we show that the simple ansatz of a Jastrow correlated single determinant (JSD) wave function is unable to provide an accurate description of the electronic structure in these diradical molecules, both at variational level (VMC torsional barrier of C2H4 of 99.3(2) kcal/mol, triplet−singlet energy gap of CH2 of 13.45(10) kcal/mol) and, more remarkably, in the fixed-nodes projection schemes (LRDMC torsional barrier of 97.5(2) kcal/mol, triplet−singlet energy gap of 13.36(8) kcal/mol) showing that a poor description of the static correlation yields an inaccurate nodal surface. The suitability of JAGP to correctly describe diradicals with a computational cost comparable with that of a JSD calculation, in combination with a favorable scalability of QMC algorithms with the system size, opens new perspectives in the ab initio study of large diradical systems, like the transition states in cycloaddition reactions and the thermal isomerization of biological chromophores.
机译:双自由基分子是参与许多有机和无机化学反应的必需物质。它们的电子结构的计算研究通常具有挑战性,因为对相关性,尤其是静态相关性的可靠描述需要多参考技术。基于价键\ udrepresentation,Jastrow相关的反对称双精度功率(JAGP)是一种紧凑而有效的波动函数ansatz,可在量子蒙特卡洛(QMC)方法中使用。 AGP部分可以按照分子轨道进行重写,从而获得具有零优先级数的多行列式展开式。在当前的工作中,我们演示了JAGP ansatz正确描述两个双自由基原型电子结构的能力:正交扭曲的乙烯C2H4和亚甲基CH2,分别代表同对称和异对称系统。在正交扭曲的乙烯中,我们发现了π和π*分子轨道的简并性,如通过多参考程序正确预测的,以及我们对扭曲势垒的最佳估计,分别使用了变分蒙特卡罗(VMC)和晶格正则化扩散蒙特卡罗(LRDMC)方法为71.9(1)和70.2(2)kcal / mol,与高水平MR-CISD + Q值69.2 kcal / mol非常吻合。在亚甲基中,我们分别使用VMC和LRDMC估算了绝热三重态-单峰(X̃3B1-a1̃ A1)的能隙为8.32(7)和8.64(6)kcal / mol,与实验得出的Te的发现结果一致,为9.363 kcal /摩尔另一方面,我们证明了Jastrow相关单行列式(JSD)波函数的简单ansatz无法提供这些双自由基分子中电子结构的准确描述,无论是在变化水平上(C2H4的VMC扭转势垒为99.3) (2)kcal / mol,CH2的三重态-三重态能隙为13.45(10)kcal / mol),更显着的是,在固定节点投影方案中(LRDMC扭转势垒为97.5(2)kcal / mol,三重态-单重态能隙为13.36(8)kcal / mol),表明对静态相关性的不良描述会导致节点表面不准确。 JAGP的正确性描述了自由基,其计算成本可与JSD计算相媲美,再加上QMC算法具有良好的系统规模可扩展性,为大型自由基系统的从头研究提供了新的视角,例如过渡环加成反应的状态和生物生色团的热异构化。

著录项

相似文献

  • 外文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号