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Toward the efficient local tailored coupled cluster approximation and the peculiar case of oxo-Mn(Salen)

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    0517569 - ÚFCH JH 2020 RIV US eng J - Journal Article
    Antalík, Andrej - Veis, Libor - Brabec, Jiří - Demel, Ondřej - Legeza, Ö. - Pittner, Jiří
    Toward the efficient local tailored coupled cluster approximation and the peculiar case of oxo-Mn(Salen).
    Journal of Chemical Physics. Roč. 151, č. 8 (2019), č. článku 084112. ISSN 0021-9606. E-ISSN 1089-7690
    R&D Projects: GA ČR GA16-12052S; GA ČR(CZ) GJ18-18940Y; GA MŠMT(CZ) LTAUSA17033
    Institutional support: RVO:61388955
    Keywords : matrix renormalization-group * multireference perturbation-theory * correlated molecular calculations * consistent basis-sets * gaussian-basis sets * ab-initio * configuration-interaction * electronic states * equations * moments
    OECD category: Physical chemistry
    Impact factor: 2.991, year: 2019
    Method of publishing: Limited access

    We introduce a new implementation of the coupled cluster method with single and double excitations tailored by the matrix product state wave functions (DMRG-TCCSD), which employs the local pair natural orbital (LPNO) approach. By exploiting locality in the coupled cluster stage of the calculation, we were able to remove some of the limitations that hindered the application of the canonical version of the method to larger systems and/or with larger basis sets. We assessed the accuracy of the approximation using two systems: tetramethyleneethane (TME) and oxo-Mn(Salen). Using the default cut-off parameters, we were able to recover over 99.7% and 99.8% of the canonical correlation energy for the triplet and singlet state of TME, respectively. In the case of oxo-Mn(Salen), we found that the amount of retrieved canonical correlation energy depends on the size of the complete active space (CAS)-we retrieved over 99.6% for the larger 27 orbital CAS and over 99.8% for the smaller 22 orbital CAS. The use of LPNO-TCCSD allowed us to perform these calculations up to quadruple-zeta basis set, amounting to 1178 basis functions. Moreover, we examined dependence of the ground state of oxo-Mn(Salen) on the CAS composition. We found that the inclusion of 4d(xy) orbital plays an important role in stabilizing the singlet state at the DMRG-CASSCF level via double-shell effect. However, by including dynamic correlation, the ground state was found to be triplet regardless of the size of the basis set or the composition of CAS, which is in agreement with previous findings by canonical DMRG-TCCSD in smaller basis.
    Permanent Link: http://hdl.handle.net/11104/0302897

     
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