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One-dimensional phase transitions in a two-dimensional optical lattice
Authors:M. Rehn  S. Bergkvist  A. Rosengren  R. Saers  M. Zelán  E. Lundh  A. Kastberg
Affiliation:1.Department of Physics,Ume? University,Ume?,Sweden;2.Quantum Research Group, School of Physics,University of KwaZulu-Natal,Durban,South Africa;3.Condensed Matter Theory, Department of Theoretical Physics,AlbaNova University Center, KTH,Stockholm,Sweden;4.NORDITA,AlbaNova University Center,Stockholm,Sweden
Abstract:A phase transition for bosonic atoms in a two-dimensional anisotropic optical lattice is considered. If the tunnelling rates in two directions are different, the system can undergo a transition between a two-dimensional superfluid and a one-dimensional Mott insulating array of strongly coupled tubes. The connection to other lattice models is exploited in order to better understand the phase transition. Critical properties are obtained using quantum Monte Carlo calculations. These critical properties are related to correlation properties of the bosons and a criterion for commensurate filling is established.
Keywords:  KeywordHeading"  >PACS 05.30.Jp Boson systems  03.75.Lm Tunneling, Josephson effect, Bose-Einstein condensates in periodic potentials, solitons, vortices, and topological excitations  67.90.+z Other topics in quantum fluids and solids
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