4.8 Article

Coupled Cluster Method with Single and Double Excitations Tailored by Matrix Product State Wave Functions

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 7, Issue 20, Pages 4072-4078

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpclett.6b01908

Keywords

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Funding

  1. Czech Science Foundation [16-12052S]
  2. Czech Ministry of Education, Youth and Sports from the Large Infrastructures for Research, Experimental Development and Innovations project IT4Innovations National Supercomputing Center [LM2015070, DAAD/16/07]
  3. Hungarian Czech Joint Research Project [MTA/16/05]
  4. Hungarian Research Fund (OTKA) [NN110360]

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In the past decade, the quantum chemical version of the density matrix renormalization group (DMRG) method has established itself as the method of choice for calculations of strongly correlated molecular systems. Despite its favorable scaling, it is in practice not suitable for computations of dynamic correlation. We present a novel method for accurate post-DMRG treatment of dynamic correlation based on the tailored coupled cluster (CC) theory in which the DMRG method is responsible for the proper description of nondynamic correlation, whereas dynamic correlation is incorporated through the framework of the CC theory. We illustrate the potential of this method on prominent multireference systems, in particular, N-2 and Cr-2 molecules and also oxo-Mn(Salen), for which we have performed the first post-DMRG computations in order to shed light on the energy ordering of the lowest spin states.

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