Title of article :
Competing orders in one-dimensional half-integer fermionic cold atoms: A conformal field theory approach Original Research Article
Author/Authors :
P. Lecheminant، نويسنده , , P. Azaria، نويسنده , , E. Boulat، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
27
From page :
443
To page :
469
Abstract :
The physical properties of arbitrary half-integer spins image fermionic cold atoms loaded into a one-dimensional optical lattice are investigated by means of a conformal field theory approach. We show that for attractive interactions two different superfluid phases emerge for image: A BCS pairing phase, and a molecular superfluid phase which is formed from bound-states made of 2N fermions. In the low-energy approach, the competition between these instabilities and charge-density waves is described in terms of image parafermionic degrees of freedom. The quantum phase transition for image is universal and shown to belong to the Ising and three-state Potts universality classes respectively. In contrast, for image, the transition is non-universal. For a filling of one atom per site, a Mott transition occurs and the nature of the possible Mott-insulating phases are determined.
Keywords :
Cold fermionic atoms , Conformal field theory , Bosonization , Parafermions , Exotic superfluidity
Journal title :
Nuclear Physics B
Serial Year :
2008
Journal title :
Nuclear Physics B
Record number :
876803
Link To Document :
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