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Interrelations between the a priori and a posteriori BSSE Correction Schemes

机译:先验和后验BSSE校正方案之间的相互关系

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The a priori BSSE-free chemical Hamiltonian approach (CHA) of computing intermolecular interaction energies usually gives results close to those obtained by the a posteriori counterpoise (CP) basis set superposition error (BSSE) correction scheme of Boys and Bemardi.As the basis set improves,the difference between the results of these BSSE-corrected methods diminishes much faster than BSSE disappears from the uncorrected interaction energies.Here we try to give a possible explanation of this behavior,by considering two different aspects of interrelations between the two schemes.We present a formal perturbation-theoretical analysis indicating that the behavior can be rationalized on the basis of observing that BSSE and true intermolecular interactions can be considered additive effects under certain conditions,providing formal justification for the tacit additivity assumption inherent in the CP formalism.We also present an analysis of the alternative interpretations of the CP scheme,which allows one to define the CP-corrected density matrix,permitting calculation of CP-corrected quantities for electron density and bond orders.Diagonalizing the CP-corrected density matrix,one can arrive at one-electron orbitals,the use of which gives energies close to the CHA-SCF ones.The results indicate that the two conceptually different BSSE correction schemes corroborate each other not only in the sense of giving close numerical results but also at the level of the theoretical analysis.
机译:计算分子间相互作用能的先验无BSSE化学汉密尔顿方法(CHA)通常得出的结果与通过Boys and Bemardi的后验对偶(CP)基集叠加误差(BSSE)校正方案获得的结果接近。改进后,这些BSSE校正方法的结果之间的差异减小的速度要比BSSE从未校正的相互作用能中消失的速度快得多。在这里,我们尝试通过考虑两种方案之间相互关系的两个不同方面来对此行为做出可能的解释。提出了形式上的扰动理论分析,表明可以在观察到BSSE和真正的分子间相互作用在一定条件下被视为加性效应的基础上使行为合理化,从而为CP形式主义固有的隐性加性假设提供了形式上的证明。对CP方案的替代解释进行了分析, ch允许定义一个CP校正的密度矩阵,允许计算CP校正的电子密度和键序数。对角化CP校正的密度矩阵,一个可以到达一个电子轨道,利用它可以使能量接近结果表明,这两个概念上不同的BSSE校正方案不仅在给出近似数值结果的意义上而且在理论分析的水平上也相互佐证。

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