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Ground-state Bethe root densities and quantum phase transitions

Authors :
Ian Marquette
Jon Links
Publication Year :
2014
Publisher :
arXiv, 2014.

Abstract

Exactly solvable models provide a unique method, via qualitative changes in the distribution of the ground-state roots of the Bethe Ansatz equations, to identify quantum phase transitions. Here we expand on this approach, in a quantitative manner, for two models of Bose--Einstein condensates. The first model deals with the interconversion of bosonic atoms and molecules. The second is the two-site Bose--Hubbard model, widely used to describe tunneling phenomena in Bose--Einstein condensates. For these systems we calculate the ground-state root density. This facilitates the determination of analytic forms for the ground-state energy, and associated correlation functions through the Hellmann--Feynman theorem. These calculations provide a clear identification of the quantum phase transition in each model. For the first model we obtain an expression for the molecular fraction expectation value. For the two-site Bose--Hubbard model we find that there is a simple characterisation of condensate fragmentation.<br />Comment: 16 pages, 5 figures, 2 tables

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....943420bec7683788e1772c5ab0696233
Full Text :
https://doi.org/10.48550/arxiv.1409.5484