English

Quantum correlations of few dipolar bosons in a double-well trap

Quantum Gases 2016-08-24 v4

Abstract

We consider NN interacting dipolar bosonic atoms at zero temperature in a double-well potential. This system is described by the two-space-mode extended Bose-Hubbard (EBH) Hamiltonian which includes (in addition to the familiar BH terms) the nearest-neighbor interaction, correlated hopping and bosonic-pair hopping. For systems with N=2N=2 and N=3N=3 particles we calculate analytically both the ground state and the Fisher information, the coherence visibility, and the entanglement entropy that characterize the correlations of the lowest energy state. The structure of the ground state crucially depends on the correlated hopping KcK_c. On one hand we find that this process makes possible the occurrence of Schr\"odinger-cat states even if the onsite interatomic attraction is not strong enough to guarantee the formation of such states. On the other hand, in the presence of a strong onsite attraction, sufficiently large values of Kc|K_c| destroys the cat-like state in favor of a delocalized atomic coherent state.

Keywords

Cite

@article{arxiv.1603.06724,
  title  = {Quantum correlations of few dipolar bosons in a double-well trap},
  author = {Michele Pizzardo and Giovanni Mazzarella and Luca Salasnich},
  journal= {arXiv preprint arXiv:1603.06724},
  year   = {2016}
}

Comments

21 pages, 10 figures. This paper has been accepted for publication in a festschrift issue of Journal of Low Temperature Physics in honor of Prof. Flavio Toigo on the occasion of his 70th birthday. The paper extends our previous results, which can be found in arXiv:1410.5321, obtained in the absence of dipolar interaction