Phase diagram and re-entrant fermionic entanglement in a hybrid Ising-Hubbard ladder

H. S. Sousa, M. S. S. Pereira, I. N. de Oliveira, J. Strečka, and M. L. Lyra
Phys. Rev. E 97, 052115 – Published 14 May 2018

Abstract

The degree of fermionic entanglement is examined in an exactly solvable Ising-Hubbard ladder, which involves interacting electrons on the ladder's rungs described by Hubbard dimers at half-filling on each rung, accounting for intrarung hopping and Coulomb terms. The coupling between neighboring Hubbard dimers is assumed to have an Ising-like nature. The ground-state phase diagram consists of four distinct regions corresponding to the saturated paramagnetic, the classical antiferromagnetic, the quantum antiferromagnetic, and the mixed classical-quantum phase. We have exactly computed the fermionic concurrence, which measures the degree of quantum entanglement between the pair of electrons on the ladder rungs. The effects of the hopping amplitude, the Coulomb term, temperature, and magnetic fields on the fermionic entanglement are explored in detail. It is shown that the fermionic concurrence displays a re-entrant behavior when quantum entanglement is being generated at moderate temperatures above the classical saturated paramagnetic ground state.

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  • Received 23 January 2018
  • Revised 23 March 2018

DOI:https://doi.org/10.1103/PhysRevE.97.052115

©2018 American Physical Society

Physics Subject Headings (PhySH)

Statistical Physics & ThermodynamicsQuantum Information, Science & Technology

Authors & Affiliations

H. S. Sousa1,2, M. S. S. Pereira1, I. N. de Oliveira1, J. Strečka3, and M. L. Lyra1

  • 1Instituto de Física, Universidade Federal de Alagoas 57072-970 Maceió, Alagoas, Brazil
  • 2Instituto Federal do Piauí, Campus Pedro II, 64255-000 Pedro II-Piauí, Brazil
  • 3Department of Theoretical Physics and Astrophysics, Faculty of Science, P.J. Šafárik University, Park Angelinum 9, 040 01 Košice, Slovakia

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Issue

Vol. 97, Iss. 5 — May 2018

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