Papers
Topics
Authors
Recent
Search
2000 character limit reached

Renormalized Internally-Contracted Multireference Coupled Cluster with Perturbative Triples

Published 25 May 2024 in physics.chem-ph, physics.comp-ph, and quant-ph | (2405.16139v2)

Abstract: In this work, we combine the many-body formulation of the internally contracted multireference coupled cluster (ic-MRCC) method with Evangelista's multireference formulation of the driven similarity renormalization group (DSRG). The DSRG method can be viewed as a unitary multireference coupled cluster theory, which renormalizes the amplitudes based on a flow equation approach to eliminate numerical instabilities. We extend this approach by demonstrating that the unitary flow equation approach can be adapted for nonunitary transformations, rationalizing the renormalization of ic-MRCC amplitudes. We denote the new approach, the renormalized ic-MRCC (ric-MRCC) method. To achieve high accuracy with a reasonable computational cost, we introduce a new approximation to the Baker-Campbell-Hausdorff expansion. We fully consider the linear commutator while approximating the quadratic commutator, for which we neglect specific contractions involving amplitudes with active indices. Moreover, we introduce approximate perturbative triples to obtain the ric-MRCCSD[T] method. We demonstrate the accuracy of our approaches in comparison to advanced multireference methods for the potential energy curves of H8, F2, H2O, N2, and Cr2. Additionally, we show that ric-MRCCSD and ric-MRCSSD[T] match the accuracy of CCSD(T) for evaluating spectroscopic constants and of full configuration interaction energies for a set of small molecules.

Definition Search Book Streamline Icon: https://streamlinehq.com
References (8)
  1. Shavitt, I.; Bartlett, R. J. Many-Body Methods in Chemistry and Physics: MBPT and Coupled-Cluster Theory; Cambridge Molecular Science; Cambridge University Press, 2009.
  2. Chan, G. K.-L.; Dorando, J. J.; Ghosh, D.; Hachmann, J.; Neuscamman, E.; Wang, H.; Yanai, T. Frontiers in Quantum Systems in Chemistry and Physics; Springer-Verlag, 2008; pp 49–65.
  3. Feldmann, R.; Mörchen, M.; Lang, J.; Lesiuk, M.; Reiher, M. Complete Active Space Iterative Coupled Cluster Theory. arXiv preprint arXiv:2404.06070 2024,
  4. Buenker, R. J.; Peyerimhoff, S. D. Ab Initio Calculations Close to the Full CI Level of Accuracy and their Use for the Interpretation of Molecular Spectra. New Horizons of Quantum Chemistry. Dordrecht, 1983; pp 183–219.
  5. Feldmann, R.; Mörchen, M.; Reiher, M. ricMRCC Package 1.0.0. 2024; https://doi.org/10.5281/zenodo.11207116.
  6. Mörchen, M.; Feldmann, R.; Reiher, M. CASiCC Package 1.0.0. 2024; https://doi.org/10.5281/zenodo.10927298.
  7. Davidson, E. R. Configuration Interaction Description of Electron Correlation. World Quantum Chem. Dordrecht, 1974; pp 17–30.
  8. Herzberg, G. Spectra of diatomic molecules; van Nostrand Reinhold Company: New York, 1950; Vol. 1.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.

Authors (2)

Collections

Sign up for free to add this paper to one or more collections.

Tweets

Sign up for free to view the 3 tweets with 9 likes about this paper.