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Coupled cluster-inspired geminal wavefunctions

delete2024-04-10
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OA
AI
P
Pratiksha B. Gaikwad
T
Taewon David Kim
M
Michelle Richer
R
Rugwed A. Lokhande
G
Gabriela Sánchez‐Díaz
P
Peter A. Limacher
P
Paul W. Ayers
R
Ramón Alain Miranda‐Quintana *
DOI:10.1063/5.0202035delete
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Abstract

Abstract

En 中文
Electron pairs have an illustrious history in chemistry, from powerful concepts to understanding structural stability and reactive changes to the promise of serving as building blocks of quantitative descriptions of the electronic structure of complex molecules and materials. However, traditionally, two-electron wavefunctions (geminals) have not enjoyed the popularity and widespread use of the more standard single-particle methods. This has changed recently, with a renewed interest in the development of geminal wavefunctions as an alternative to describing strongly correlated phenomena. Hence, there is a need to find geminal methods that are accurate, computationally tractable, and do not demand significant input from the user (particularly via cumbersome and often ill-behaved orbital optimization steps). Here, we propose new families of geminal wavefunctions inspired by the pair coupled cluster doubles ansatz. We present a new hierarchy of two-electron wavefunctions that extends the one-reference orbital idea to other geminals. Moreover, we show how to incorporate single-like excitations in this framework without leaving the quasiparticle picture. We explore the role of imposing seniority restrictions on these wavefunctions and benchmark these new methods on model strongly correlated systems.
Keywords:
STRONGLY ORTHOGONAL GEMINALS
NATURAL RESONANCE THEORY
PLESSET PERTURBATION-THEORY
SPACE SCF METHOD
ANTISYMMETRIZED PRODUCT
DENSITY-MATRIX
DIAGRAMMATICAL METHOD
ELECTRON CORRELATION
ORBITAL EXPANSION
MODEL SYSTEMS

Journal

Journal of Chemical Physics cover
Journal of Chemical Physics
IF:
3.1
Papers:
7.2W
Citations:
23.2W

Organization

State University System of Florida cover
State University System of Florida
Scholars:
12.7W
Papers: 10.9W
Citations: 130