English

Entanglement and seniority

Nuclear Theory 2022-01-03 v1 Strongly Correlated Electrons Chemical Physics

Abstract

We study mode-entanglement in the seniority model, derive analytic formulas for the one-body reduced density matrix of states with seniority ν=0,  1,  2\nu = 0,\;1,\;2, and ν=3\nu=3, 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 94Ru^{94}{\rm Ru} 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 94Ru^{94}{\rm Ru}, the seniority model accounts for the 0g9/20g_{9/2} mode entropies, but seniority mixing is important for certain yrast states. Interaction induced quantum fluctuations decrease the occupation of the 0f5/20f_{5/2}, 1p3/21p_{3/2} and 1p1/21p_{1/2} shells, and amount in finite mode entropies on these shells, too, clearly outside the scope of the simple (0g9/2)4(0g_{9/2})^4 seniority model. The 0f7/20f_{7/2} shell based seniority model is more accurate for the light Ca{\rm Ca} isotopes, but seniority mixing is substantial for some 44Ca^{44}{\rm Ca} yrast states, too.

Keywords

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

R2 v1 2026-06-24T08:36:54.725Z