English

Interorbital interaction in the one-dimensional periodic Anderson model: A density-matrix renormalization-group study

Strongly Correlated Electrons 2014-09-26 v2

Abstract

We investigate the effect of the Coulomb interaction, UcfU_{cf}, between the conduction and f electrons in the periodic Anderson model using the density-matrix renormalization-group algorithm. We calculate the excitation spectrum of the half-filled symmetric model with an emphasis on the spin and charge excitations. In the one-dimensional version of the model it is found that the spin gap is smaller than the charge gap below a certain value of UcfU_{cf} and the reversed inequality is valid for stronger UcfU_{cf}. This behavior is also verified by the behavior of the spin and density correlation functions. We also perform a quantum information analysis of the model and determine the entanglement map of the f and conduction electrons. It is revealed that for a certain UcfU_{cf} the ground state is dominated by the configuration in which the conduction and f electrons are strongly entangled, and the ground state is almost a product state. For larger UcfU_{cf} the sites are occupied alternatingly dominantly by two f electrons or by two conduction electrons.

Keywords

Cite

@article{arxiv.1406.6292,
  title  = {Interorbital interaction in the one-dimensional periodic Anderson model: A density-matrix renormalization-group study},
  author = {I. Hagymasi and J. Solyom and O. Legeza},
  journal= {arXiv preprint arXiv:1406.6292},
  year   = {2014}
}

Comments

10 pages, 15 figures, revised version

R2 v1 2026-06-22T04:45:56.942Z