The self-trapping transition in the non-half-filled strongly correlated extended Holstein-Hubbard model in two-dimensions
The self-trapping transition in the non-half-filled strongly correlated extended Holstein-Hubbard model in two-dimensions
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Date
2014-01-01
Authors
Sankar, I. V.
Chatterjee, Ashok
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Abstract
The two-dimensional extended Holstein-Hubbard model (EHH) has been considered at strong correlation regime in the non-half-filled band case to understand the self-trapping transition of electrons in strongly correlated electron system. We have used the method of optimized canonical transformations to transform an EHH model into an effective extended Hubbard (EEH) model. In the strong on-site correlation limit an EH model can be transformed into a t-J model which is finally solved using Hartree-Fock approximation (HFA). We found that, for non-half-filled band case, the transition is abrupt in the adiabatic region whereas it is continuous in the anti-adiabatic region. © 2014 AIP Publishing LLC.
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Keywords
Hartree-Fock approximation,
Holstein-Hubbard model,
Polarons,
T-J model
Citation
AIP Conference Proceedings. v.1591