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Theory of extreme correlations using canonical Fermions and path integrals
Authors:B. Sriram Shastry
Affiliation:Physics Department, University of California, Santa Cruz, CA 95064, United States
Abstract:The  tt–JJ  model is studied using a novel and rigorous mapping of the Gutzwiller projected electrons, in terms of canonical electrons. The mapping has considerable similarity to the Dyson–Maleev transformation relating spin operators to canonical Bosons. This representation gives rise to a non Hermitian quantum theory, characterized by minimal redundancies. A path integral representation of the canonical theory is given. Using it, the salient results of the extremely correlated Fermi liquid (ECFL) theory, including the previously found Schwinger equations of motion, are easily rederived. Further, a transparent physical interpretation of the previously introduced auxiliary Greens function and the ‘caparison factor’, is obtained.
Keywords:t  si96.gif"   overflow="  scroll"  >t&ndash  J  si97.gif"   overflow="  scroll"  >J model   Gutzwiller projection   Energy dispersion   Angle resolved photoemission   Path integrals   Schwinger equations of motion
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