arXiv · cond-mat/9609060
Strong-coupling approach to ground-state properties of the Anderson lattice-model
Abstract
A Slave-Boson perturbational approach to ground-state properties of the $U\to\infty$ periodic Anderson model is derived as an expansion around the Atomic Limit ($V=0$). In the case of zero temperature any constraint-integral or limiting procedure can be avoided, a gauge-symmetry broken Mean-Field phase is not involved. Physical quantities like the wave vector $k$ dependent Green's function obey a direct representation in Feynman-skeleton diagrams in $k$-space. A self-consistent $1/N$-expansion is derived, and its relation to the limit of infinite spatial dimension $d\to\infty$ is pointed out.
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Jan Brinckmann. 1996-09-05. Strong-coupling approach to ground-state properties of the Anderson lattice-model. https://doi.org/10.1016/s0921-4526(97)81586-4
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