English

Analytical results on quantum correlations of few bosons in a double-well trap

Quantum Gases 2015-02-25 v1

Abstract

We consider a finite number NN of interacting bosonic atoms at zero temperature confined in a one-dimensional double-well trap and study this system by using the two-site Bose-Hubbard (BH) Hamiltonian. For systems with N=2N=2 and N=3N=3, and N=4N=4 bosons we analytically solve the eigenproblem associated to this Hamiltonian and find its lowest energetic state. We investigate the structure of the ground state by varying the strength of the boson-boson interaction from the strongly attractive regime to the deep repulsive one. We characterize the ground state of the two-site BH Hamiltonian by calculating the Fisher information FF, the coherence visibility α\alpha, and the entanglement entropy SS. For these quantities we provide analytical formulas that we use to study FF, α\alpha, and SS as functions of the interaction between the particles. We discuss the difference existing, in the deep repulsive regime, between the case with an even number of bosons and that with an odd number of particles, both in the structure of the lowest energetic state and in the behavior of the three above ground-state characterizing parameters

Keywords

Cite

@article{arxiv.1410.5321,
  title  = {Analytical results on quantum correlations of few bosons in a double-well trap},
  author = {Mario Galante and Giovanni Mazzarella and Luca Salasnich},
  journal= {arXiv preprint arXiv:1410.5321},
  year   = {2015}
}

Comments

22 pages, 2 figures, accepted for publication in Special Issue of Romanian Reports in Physics on "Bose-Einstein condensation: Twenty years after"