Casula Michele, Attaccalite Claudio, Sorella Sandro
International School for Advanced Studies (SISSA) Via Beirut 2,4 34014 Trieste, Italy.
J Chem Phys. 2004 Oct 15;121(15):7110-26. doi: 10.1063/1.1794632.
We show that a simple correlated wave function, obtained by applying a Jastrow correlation term to an antisymmetrized geminal power, based upon singlet pairs between electrons, is particularly suited for describing the electronic structure of molecules, yielding a large amount of the correlation energy. The remarkable feature of this approach is that, in principle, several resonating valence bonds can be dealt simultaneously with a single determinant, at a computational cost growing with the number of electrons similar to more conventional methods, such as Hartree-Fock or density functional theory. Moreover we describe an extension of the stochastic reconfiguration method, which was recently introduced for the energy minimization of simple atomic wave functions. Within this extension the atomic positions can be considered as further variational parameters, which can be optimized together with the remaining ones. The method is applied to several molecules from Li(2) to benzene by obtaining total energies, bond lengths and binding energies comparable with much more demanding multiconfiguration schemes.
我们表明,通过将Jastrow关联项应用于基于电子间单重态对的反对称双电子幂得到的简单关联波函数,特别适合于描述分子的电子结构,能产生大量的关联能。这种方法的显著特点是,原则上几个共振价键可以用一个行列式同时处理,计算成本随电子数增加,与诸如Hartree-Fock或密度泛函理论等更传统的方法类似。此外,我们描述了随机重配置方法的一种扩展,该方法最近被引入用于简单原子波函数的能量最小化。在这种扩展中,原子位置可被视为进一步的变分参数,可与其余参数一起优化。通过获得与要求更高的多组态方案相当的总能量、键长和结合能,该方法被应用于从Li(2)到苯的几个分子。