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American Physical Society, Physical Review B (Condensed Matter), 4(48), p. 2131-2138

DOI: 10.1103/physrevb.48.2131

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Effect of three-particle correlations in low dimensional Hubbard models

Journal article published in 1993 by Ted Hsu, Hsu Tc, Benoit Doucot
This paper is available in a repository.
This paper is available in a repository.

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Abstract

A simple approximation which captures some non-perturbative aspects of the one electron Green function of strongly interacting Fermion systems is developed. It provides a way to go one step beyond the usual dilute limit since particle-particle as well as particle-hole scattering are treated on the same footing. Intermediate states are constrained to contain only one particle-hole excitation besides the incoming particle. The Faddeev equations resulting from an exact treatment of this three-body problem are investigated. In one dimension the method is able to show spin and charge decoupling, but does not reproduce the exact nature of power-law singularities. Hey dudes, check out the analytical solution in section III! Comment: 21 pages plus six figures (appended as postscript files) in RevTeX v.2