Richardson-Gaudin Configuration-Interaction for nuclear pairing correlations
Stijn De Baerdemacker, Pieter W. Claeys, Jean-S\'ebastien Caux,, Dimitri Van Neck, Paul W. Ayers

TL;DR
This paper introduces a novel Richardson-Gaudin based method for nuclear pairing correlations that achieves high accuracy and rapid convergence, improving the treatment of strongly correlated nuclear systems.
Contribution
The paper develops a two-step Richardson-Gaudin configuration interaction method that systematically improves pairing correlation calculations with exponential convergence.
Findings
Achieves ~1% accuracy in correlation energies
Exponential convergence with increasing Hilbert space size
Benchmarked successfully against exact results in Sn nuclei
Abstract
Background: The nuclear many-body system is a strongly correlated quantum system, posing serious challenges for perturbative approaches starting from uncorrelated reference states. The last decade has witnessed considerable progress in the accurate treatment of pairing correlations, one of the major components in medium-sized nuclei, reaching accuracies below the 1% level of the correlation energy. Purpose: Development of a quantum many-body method for pairing correlations that is (a) competitive in the 1% error range, and (b) can be systematically improved with a fast (exponential) convergence rate. Method: The present paper capitalizes upon ideas from Richardson-Gaudin integrability. The proposed method is a two-step approach. The first step consists of the optimization of a Richardson-Gaudin ground state as variational trial state. At the second step, the complete set of excited…
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Taxonomy
TopicsAdvanced Chemical Physics Studies · Nuclear physics research studies · Advanced NMR Techniques and Applications
