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A Quantum-Inspired Algorithm for the Factorized Form of Unitary Coupled Cluster Theory

Strongly Correlated Electrons 2020-09-24 v2 Chemical Physics

Abstract

The factorized form of unitary coupled cluster theory (UCC) is a promising wave-function ansatz for the variational quantum eigensolver algorithm. Here, we present a quantum inspired algorithm for UCC based on an exact operator identity for the individual UCC factors. We implement this algorithm for calculations of the H10_{10} linear chain and the H2_2O molecule with single and double ζ\zeta basis sets to provide insights about UCC as a wave-function ansatz. We find that as an electronic structure method, UCC could potentially be valuable for strongly correlated systems, for which conventional coupled cluster theory has difficulties. On quantum computers, the factorized form of UCC can also serve as an initial state preparation method for the quantum phase-estimation algorithm, since it yields higher overlap with the ground state than many other common variational ansatzes. This classical algorithm for UCC also enables widespread testing of the technique, which will be useful for benchmarking quantum computations.

Keywords

Cite

@article{arxiv.2008.06637,
  title  = {A Quantum-Inspired Algorithm for the Factorized Form of Unitary Coupled Cluster Theory},
  author = {Jia Chen and Hai-Ping Cheng and James Freericks},
  journal= {arXiv preprint arXiv:2008.06637},
  year   = {2020}
}

Comments

26 pages 7 figures version 2 Sept.23rd 2020

R2 v1 2026-06-23T17:52:30.703Z