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The role of the magnetic orbitals in the calculation of the magnetic coupling constants from multireference perturbation theory methods

机译:磁轨道在多参考摄动理论方法计算磁耦合常数中的作用

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摘要

The use of multireference perturbation theory (MRPT) for the calculation of the magnetic coupling in binuclear complexes has shown to give poor results if applied on a minimal active space complete active space self-consistent field (CASSCF) wavefunction. In this work, we identify the origin of this problem in the starting CASSCF orbitals, which are exceedingly localized on the metal atoms. Focusing on the case of antiferromagnetic systems, it is shown that the form of the active orbitals has a dramatic effect on the relative description of the neutral and ionic structures. Finally, a simple and computational inexpensive strategy is proposed for the calculation of a set of magnetic orbitals describing in a more balanced way the neutral and ionic structures. The use of these orbitals, instead the CASSCF ones, in minimal active space MRPT2 calculations leads to a marked improvement of the J values, which become in reasonable agreement with those obtained with the expensive high level difference dedicated configuration interaction approach and with the experimental values.
机译:如果在最小活动空间,完整活动空间自洽场(CASSCF)波函数上应用,则使用多参考摄动理论(MRPT)计算双核复合物中的磁耦合将产生较差的结果。在这项工作中,我们在起始CASSCF轨道中确定了这个问题的根源,这些轨道非常局限在金属原子上。着眼于反铁磁系统的情况,表明了活性轨道的形式对中性和离子结构的相对描述具有显着影响。最后,提出了一种简单且计算便宜的策略,用于以更平衡的方式描述中性和离子结构的一组磁轨道的计算。在最小的活动空间MRPT2计算中使用这些轨道(而不是CASSCF轨道)可显着改善J值,这与使用昂贵的高差专用组态相互作用方法和实验值获得的J值合理地吻合。

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