Quantum simulation of the Hubbard model: The attractive route

Ho, A. F., Cazalilla, M. A. and Giamarchi, T.

(2009)

Ho, A. F., Cazalilla, M. A. and Giamarchi, T. (2009) Quantum simulation of the Hubbard model: The attractive route. Physical Review A, 79 (3).

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Abstract

We study the conditions under which, using a canonical transformation, the phases sought after for the repulsive Hubbard model, namely, a Mott insulator in the paramagnetic and antiferromagnetic phases, and a putative d-wave superfluid can be deduced from observations in an optical lattice loaded with a spin-imbalanced ultracold Fermi gas with attractive interactions, thus realizing the attractive Hubbard model. We argue that the Mott insulator and antiferromagnetic phase of the repulsive Hubbard model are easier to observe in the attractive Hubbard mode as a band insulator of Cooper pairs and superfluid phase, respectively. The putative d-wave superfluid phase of the repulsive Hubbard model doped away from half filling is related to a d-wave antiferromagnetic phase for the attractive Hubbard model. We discuss the advantages of this approach to "quantum simulate" the Hubbard model in an optical lattice over the simulation of the doped Hubbard model in the repulsive regime. We also point out a number of technical difficulties of the proposed approach and, in some cases, suggest possible solutions.

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This is a Approved version
This version's date is: 19/3/2009
This item is not peer reviewed

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https://repository.royalholloway.ac.uk/items/f4bbf4ac-fe7d-b7b7-fca7-480f457aa9fa/7/

Item TypeJournal Article
TitleQuantum simulation of the Hubbard model: The attractive route
AuthorsHo, A. F.
Cazalilla, M. A.
Giamarchi, T.
Uncontrolled Keywordsantiferromagnetism, Cooper pairs, d-wave superconductivity, fermion systems, Hubbard model, localised states, optical lattices, paramagnetism, OPTICAL LATTICE, MOTT INSULATOR, FERMI GAS, SUPERCONDUCTIVITY, PHYSICS, PHASES, WEAK
DepartmentsFaculty of Science\Physics
Research Groups and Centres\Physics\Low Temperature Physics

Identifiers

doihttp://dx.doi.org/10.1103/PhysRevA.79.033620

Deposited by Research Information System (atira) on 03-Jul-2014 in Royal Holloway Research Online.Last modified on 03-Jul-2014


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