Title of article :
The image Hubbard model on a square lattice in terms of image and image fermions and deconfined image-spinons and spinons Original Research Article
Author/Authors :
J.M.P. Carmelo، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
86
From page :
553
To page :
638
Abstract :
In this paper, a general description for the Hubbard model with nearest-neighbor transfer integral image and on-site repulsion image on a square lattice with image sites is introduced. It refers to three types of elementary objects whose occupancy configurations generate the state representations of the model extended global image symmetry recently found in Ref. (Carmelo and Östlund, 2010). Such objects emerge from a suitable electron–rotated-electron unitary transformation. It is such that rotated-electron single and double occupancy are good quantum numbers for image. The advantage of the description is that it accounts for the new found hidden image symmetry in image beyond the well-known image model (partial) global symmetry. Specifically, the hidden image symmetry state representations store full information on the positions of the spins of the rotated-electron singly occupied sites relative to the remaining sites. Profiting from that complementary information, for the whole image interaction range independent spin state representations are naturally generated in terms of spin-image spinon occupancy configurations in a spin effective lattice. For all states, such an effective lattice has as many sites as spinons. This allows the extension to intermediate image values of the usual large-image descriptions of the spin degrees of freedom of the electrons that singly occupy sites, now in terms of the spins of the singly-occupied sites rotated electrons. The operator description introduced in this paper brings about a more suitable scenario for handling the effects of hole doping. Within this, such effects are accounted for in terms of the residual interactions of the elementary objects whose occupancy configurations generate the state representations of the charge hidden image symmetry and spin image symmetry, respectively. This problem is investigated elsewhere. The most interesting physical information revealed by the description refers to the model on the subspace generated by the application of one- and two-electron operators onto zero-magnetization ground states. (This is the square-lattice quantum liquid further studied in Ref. (Carmelo, 2010).) However, to access such an information, one must start from the general description introduced in this paper, which refers to the model in the full Hilbert space.
Keywords :
Hubbard model on the square lattice global symmetry , Hubbard model rotated-electron description , Spinon confinement , Interplay of symmetry and electronic correlations
Journal title :
Annals of Physics
Serial Year :
2012
Journal title :
Annals of Physics
Record number :
1206564
Link To Document :
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