Toward the “platinum standard” of quantum chemistry on quantum computers: Perturbative quadruple corrections in unitary coupled cluster theory

Z Zachary W. Windom (Quantum Theory Project, University of Florida 1 , Gainesville, Florida 32611,) L Luke Bertels (Quantum Information Science Section, Oak Ridge National Laboratory 1 , Oak Ridge, Tennessee 37831,) D Daniel Claudino (Quantum Information Science Section, Oak Ridge National Laboratory 1 , Oak Ridge, Tennessee 37831,) R Rodney J. Bartlett (Quantum Theory Project, University of Florida 1 , Gainesville, Florida 32611,)

Abstract

We propose a non-iterative, post-hoc correction to the unitary coupled cluster theory with the single, double, and triple excitations (UCCSDT) Ansatz, which considers the leading-order effects of neglected quadruple excitations. We present two ways to derive this correction, henceforth referred to as [Q-6], which leads to an improvement in the correlation energy shown to be truncated to sixth-order in many-body perturbation theory. A comparison between the UCC-based [Q-6] correction proposed in this work and analogous, “platinum standard” quadruple corrections proposed in conventional coupled cluster theory recognizes that [Q-6] is distinct from prior corrections since it is constructed entirely from internally connected components. Although trotterized (t) and full operator variants of UCCSDT exhibit errors in scans of small molecule potential energy surfaces that routinely exceed 1.6 mH, we find that t/UCCSDT[Q-6] is, nevertheless, able to achieve chemical accuracy as measured by the mean unsigned error.

Article Details

Volume / Issue Vol. 164, Issue 1
Published January 07, 2026
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (4)

Z

Zachary W. Windom

Quantum Theory Project, University of Florida 1 , Gainesville, Florida 32611,

L

Luke Bertels

Quantum Information Science Section, Oak Ridge National Laboratory 1 , Oak Ridge, Tennessee 37831,

D

Daniel Claudino

Quantum Information Science Section, Oak Ridge National Laboratory 1 , Oak Ridge, Tennessee 37831,

R

Rodney J. Bartlett

Quantum Theory Project, University of Florida 1 , Gainesville, Florida 32611,