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首页> 外文期刊>Journal of chemical theory and computation: JCTC >pi-Conjugation in trans-1,3-Butadiene: Static and Dynamical Electronic Correlations Described through Quantum Monte Carlo
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pi-Conjugation in trans-1,3-Butadiene: Static and Dynamical Electronic Correlations Described through Quantum Monte Carlo

机译:反式1,3-丁二烯中的π共轭:通过量子蒙特卡洛描述的静态和动态电子相关性

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We investigate the effects of the static and dynamical electronic correlations on the level of conjugation of the trans-1,3-butadiene molecule through Quantum Monte Carlo methods applied to an Antisymmetrized Geminal Power (AGP) wave function, with a Jastrow factor similar to the Gutzwiller ansatz. The degree of conjugation is measured through the convergence of the structural properties of 1,3-butadiene and in particular of the Bond Length Alternation (BLA), that is the difference between the lengths of the single and double carbon bonds. After verifying the different roles of the Fermionic AGP part of our wave function and of the Jastrow factor in recovering electronic correlation, we study the effects of a constrained Active Space AGP (AGP(AS)), similar to that used in the Complete Active Space (CAS) representation. Through this AGP(AS), we are able to identify the effect of the limited active space on the degree of conjugation, showing that in the limit of infinite active space the structural properties converge exactly to those of the atomic AGP, giving a BLA for 1,3-butadiene around 0.1244(5) angstrom.
机译:我们研究了静态和动态电子相关性对反1,3-丁二烯分子共轭水平的影响,方法是将量子蒙特卡罗方法应用于反对称的Geminal Power(AGP)波函数,其Jastrow因子类似于Gutzwiller ansatz。通过1,3-丁二烯的结构性质,特别是键长交替(BLA),即单碳键和双碳键的长度之差的收敛,来测量共轭程度。在验证了波函数的费米离子AGP部分和Jastrow因子在恢复电子相关性中的不同作用后,我们研究了约束活动空间AGP(AGP(AS))的作用,类似于完全活动空间中的作用(CAS)表示。通过该AGP(AS),我们能够确定有限的活动空间对共轭程度的影响,表明在无限的活动空间的限制下,结构特性完全收敛于原子AGP的结构特性,从而为1,3-丁二烯约为0.1244(5)埃。

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