Ground-state properties of hard-core bosons confined on one-dimensional optical lattices
Abstract
We study the ground-state properties of hard-core bosons trapped by arbitrary confining potentials on one-dimensional optical lattices. A recently developed exact approach based on the Jordan-Wigner transformation is used. We analyze the large distance behavior of the one-particle density matrix, the momentum distribution function, and the lowest natural orbitals. In addition, the low-density limit in the lattice is studied systematically, and the results obtained compared with the ones known for the hard-core boson gas without the lattice.
- Publication:
-
Physical Review A
- Pub Date:
- July 2005
- DOI:
- 10.1103/PhysRevA.72.013604
- arXiv:
- arXiv:cond-mat/0409132
- Bibcode:
- 2005PhRvA..72a3604R
- Keywords:
-
- 03.75.Hh;
- 05.30.Jp;
- Static properties of condensates;
- thermodynamical statistical and structural properties;
- Boson systems;
- Condensed Matter - Statistical Mechanics;
- Condensed Matter - Other
- E-Print:
- RevTex file, 14 pages, 22 figures, published version