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TMF, 2008 Volume 155, Number 3, Pages 474–497 (Mi tmf6224)

This article is cited in 7 papers

A diagram approach to the strong coupling in the single-impurity Anderson model

V. A. Moskalenkoab, P. Entelc, D. F. Digorb, L. A. Dohotarud, R. Citroe

a Joint Institute for Nuclear Research
b Institute of Applied Physics Academy of Sciences of Moldova
c University of Duisburg-Essen
d Technical University of Moldova
e Dipartimento di Fisica "E. R. Caianiello", Università degli Studi di Salerno

Abstract: We propose a diagram theory around the atomic limit for the single-impurity Anderson model in which the strongly correlated impurity electrons hybridize with free (uncorrelated) conduction electrons. Using this diagram approach, we prove a linked-cluster theorem for the vacuum diagrams and derive Dyson-type equations for localized and conduction electrons and the corresponding equations for mixed propagators. The system of equations can be closed by summing an infinite series of ladder diagrams containing irreducible Green's functions. The result allows discussing resonances associated with quantum transitions at the impurity site.

Keywords: strong correlation, spectral function, Dyson equation, Green's function, Anderson impurity model.

Received: 20.06.2007

DOI: 10.4213/tmf6224


 English version:
Theoretical and Mathematical Physics, 2008, 155:3, 914–935

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