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arxiv: 1710.08596 · v1 · pith:DCIK3ZT5new · submitted 2017-10-24 · ❄️ cond-mat.quant-gas · nlin.SI

Exact ground-state correlation functions of an atomic-molecular boson conversion model

classification ❄️ cond-mat.quant-gas nlin.SI
keywords ground-statebethephaseatomic-molecularbosoncertainconversioncorrelation
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We study the ground-state properties of an atomic-molecular boson conversion model through an exact Bethe Ansatz solution. For a certain range of parameter choices, we prove that the ground-state Bethe roots lie on the positive real-axis. We then use a continuum limit approach to obtain a singular integral equation characterising the distribution of these Bethe roots. Solving this equation leads to an analytic expression for the ground-state energy. The form of the expression is consistent with the existence of a line of quantum phase transitions, which has been identified in earlier studies. This line demarcates a molecular phase from a mixed phase. Certain correlation functions, which characterise these phases, are then obtained through the Hellmann-Feynman theorem.

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