Quantum phase transition in a multicomponent Bose-Einstein condensate in optical lattices

Update Item Information
Publication Type Journal Article
School or College College of Science
Department Physics
Creator Wu, Yong-Shi
Other Author Chen, Guang-Hong
Title Quantum phase transition in a multicomponent Bose-Einstein condensate in optical lattices
Date 2003-01
Description We present a general lattice model for a multicomponent atomic Bose-Einstein system in an optical lattice. Using the model, we analytically study the quantum phase transition between the Mott insulator and a superfluid. A mean-field theory is developed from the Mott-insulator ground state. When the interspecies interactions are strong enough, the Mott insulator demonstrates the phase separation behavior. For weak interspecies interactions, the multispecies system is miscible. Finally, the phase diagram is discussed with emphasis on the role of interspecies interactions. The tip and the shape of the Mott insulator lobes do not depend on the interspecies interactions, but the latter indeed modify the position of the phase boundaries.
Type Text
Publisher American Physical Society
Journal Title Physical Review A
Volume 67
Issue 1
DOI 10.1103/PhysRevA.67.013606
citatation_issn 1050-2947
Subject Quantum phase transitions; Optical lattices; Bose-Einstein condensation; Boson-Hubbard model; Superfluids
Subject LCSH Phase transformations (Statistical physics); Quantum theory; Superfluidity
Language eng
Bibliographic Citation Chen, G.-H., & Wu, Y.-S. (2003). Quantum phase transition in a multicomponent Bose-Einstein condensate in optical lattices. Physical Review A - Atomic, Molecular, and Optical Physics, 67(1), 013606.
Rights Management (c) American Physical Society http://dx.doi.org/10.1103/PhysRevA.67.013606
Format Medium application/pdf
Format Extent 88,596 bytes
Identifier ir-main,9429
ARK ark:/87278/s6qv44wg
Setname ir_uspace
ID 704871
Reference URL https://collections.lib.utah.edu/ark:/87278/s6qv44wg
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