Entanglement and seniority
Abstract
We study mode-entanglement in the seniority model, derive analytic formulas for the one-body reduced density matrix of states with seniority , and , and also determine the particle number dependence of the one-body reduced density matrix for arbitrary seniority. We carry out numerical calculations for the lightest calcium isotopes and for nucleus, and investigate the structure of their ground and low energy yrast states. We investigate the fulfillment of several predictions of the seniority model regarding the behavior of one-mode entropies, which we compare with the results of configuration interaction (CI) and density matrix renormalization group (DMRG) computations. For , the seniority model accounts for the mode entropies, but seniority mixing is important for certain yrast states. Interaction induced quantum fluctuations decrease the occupation of the , and shells, and amount in finite mode entropies on these shells, too, clearly outside the scope of the simple seniority model. The shell based seniority model is more accurate for the light isotopes, but seniority mixing is substantial for some yrast states, too.
Cite
@article{arxiv.2112.15513,
title = {Entanglement and seniority},
author = {J. Kovács and A. T. Kruppa and P. Salamon and Ö. Legeza and G. Zaránd},
journal= {arXiv preprint arXiv:2112.15513},
year = {2022}
}
Comments
13 pages, 7 figures