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TMF, 2010 Volume 162, Number 3, Pages 439–458 (Mi tmf6481)

This article is cited in 1 paper

Diagram theory for the periodic Anderson model: Stationarity of the thermodynamic potential

V. A. Moskalenkoab, L. A. Dohotaruc, R. Citrod

a Joint Institute for Nuclear Research, Dubna, Moscow Oblast, Russia
b Institute of Applied Physics, Moldova Academy of Sciences, Chisinau, Moldova
c Technical University, Chisinau, Moldova
d Dipartimento di Fisica E. R. Caianiello, Università degli Studi di Salerno and CNISM, Baronissi, Italy

Abstract: We develop a diagram theory for the periodic Anderson model assuming that the Coulomb repulsion of localized $f$ electrons is the main parameter of the theory. the $f$ electrons are strongly correlated and the $c$ conduction electrons are uncorrelated. We determine the $f$-electron correlation function and the $c$-electron mass operator. We formulate the Dyson equation for $c$ electrons and a Dyson-type equation for $f$ electrons and their propagators. We define the skeleton diagrams for the correlation function and the thermodynamic functional. We establish the stationarity of the renormalized thermodynamic potential under variation of the mass operator. the obtained results are applicable to both the normal and the superconducting system states.

Keywords: strongly correlated electron system, Dyson equation, Green's function, periodic Anderson model.

Received: 21.05.2009
Revised: 15.07.2009

DOI: 10.4213/tmf6481


 English version:
Theoretical and Mathematical Physics, 2010, 162:3, 366–382

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