首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Investigation of Low-Lying States of Oxygen Molecule via Second-Order Multireference Perturbation Theory: A State-Specific Approach
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Investigation of Low-Lying States of Oxygen Molecule via Second-Order Multireference Perturbation Theory: A State-Specific Approach

机译:通过二阶多参考摄动理论研究氧分子的低悬浮态:一种特定于状态的方法

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摘要

The relative performance of four variants of the M?ller-Plesset (MP) partitioning (using different diagonal one-electron unperturbed Hamiltonian, H0) based state-specific multireference perturbation theory (SS-MRPT) [termed as SS-MRPT(MP)] has been investigated and demonstrated by calculations of the dissociation potential energy curves (PECs) of the first three electronic states [ground state X3Σg - as well as low-lying singlet excited states, a1Δg and b1Σg + ] of the oxygen molecule using different basis sets. The spectroscopic constants extracted from the computed PECs obtained by the SS-MRPT(MP) method are calibrated with respect to the corresponding value of the full configuration interaction (FCI) and experimental data for the corresponding states. We have also computed vertical excitation (or transition) energies and compared those with the corresponding FCI values along with the results of other available sophisticated methods. Encouraging agreement between SS-MRPT(MP) theory and some benchmark calculations has been observed. We have thus assessed the applicability and accuracy of the SS-MRPT(MP) method with different diagonal one-electron partitioning schemes. The ability of the SS-MRPT(MP) method with different partitioning schemes to predict full PECs and spectroscopic constants of the ground state and excited states with almost equivalent accuracy is promising.
机译:基于状态特定多参考扰动理论(SS-MRPT)[称为SS-MRPT(MP)]的M?ller-Plesset(MP)分区的四个变体(使用不同的对角单电子无扰哈密顿量,H0)的相对性能]已通过使用不同的基础计算氧分子的前三个电子态[基态X3Σg-以及低态单重态激发态a1Δg和b1Σg+]的解离势能曲线(PEC)进行了研究和证明套。从通过SS-MRPT(MP)方法获得的计算出的PEC中提取的光谱常数是针对完全配置相互作用(FCI)的相应值和相应状态的实验数据进行校准的。我们还计算了垂直激发(或跃迁)能量,并将其与相应的FCI值以及其他可用的复杂方法的结果进行了比较。 SS-MRPT(MP)理论与一些基准计算之间达成了令人鼓舞的共识。因此,我们用不同的对角单电子分配方案评估了SS-MRPT(MP)方法的适用性和准确性。具有不同划分方案的SS-MRPT(MP)方法能够以几乎等效的精度预测基态和激发态的完整PEC和光谱常数的能力是有希望的。

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