Quantum Rotor Model for a Bose-Einstein Condensate of Dipolar Molecules

Publication date

2013

Authors

Armaitis, J.ISNI 0000000517550292
Duine, Rembert A.ISNI 0000000387951716
Stoof, H. T.C.ISNI 0000000116481361

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Abstract

We show that a Bose-Einstein condensate of heteronuclear molecules in the regime of small and static electric fields is described by a quantum rotor model for the macroscopic electric dipole moment of the molecular gas cloud. We solve this model exactly and find the symmetric, i.e., rotationally invariant, and dipolar phases expected from the single-molecule problem, but also an axial and planar nematic phase due to many-body effects. Investigation of the wave function of the macroscopic dipole moment also reveals squeezing of the probability distribution for the angular momentum of the molecules.

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Armaitis, J, Duine, R A & Stoof, H T C 2013, 'Quantum Rotor Model for a Bose-Einstein Condensate of Dipolar Molecules', Physical Review Letters, vol. 111, no. 21, 215301, pp. 215301/1-215301/5. https://doi.org/10.1103/PhysRevLett.111.215301