Two-particle pairing and phase separation in a two-dimensional Bose-gas with one or two sorts of bosons
arXiv:cond-mat/0107453 · doi:10.1103/PhysRevB.65.195103
Abstract
We present a phase diagram for a dilute two-dimensional Bose-gas on a lattice. For one sort of boson we consider a realistic case of the van der Waals interaction between particles with a strong hard-core repulsion and a van der Waals attractive tail . For , being a hopping amplitude, the phase diagram of the system contains regions of the usual one-particle Bose-Einstein condensation (BEC). However for we have total phase separation on a Mott-Hubbard Bose solid and a dilute Bose gas. For two sorts of structureless bosons described by the two band Hubbard model an s-wave pairing of the two bosons of different sort is possible. The results we obtained should be important for different Bose systems, including submonolayers of He, excitons in semiconductors, Schwinger bosons in magnetic systems and holons in HTSC. In the HTSC case a possibility of two-holon pairing in the slave-bosons theories of superconductivity can restore a required charge of a Cooper pair.
10 pages, 2 figures
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