We analyze the conductance (g) of a quantum dot (QD) in an AC potential at finite temperature. The Friedel-Langreth sum rule (FLSR) is generalized to include the effect of an AC potential and finite T. We have solved the Anderson Hamiltonian by means of a self-consistent procedure which fulfills the generalized FLSR. New features are found in the density of states (DOS) and in g when an AC voltage is applied. Our model describes the effect of an AC potential on the transition from Kondo regime to a Coulomb-blockade: behaviour as T increases. (C) 2000 Published by Elsevier Science B.V. All rights reserved.
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Division of Computational Nanoscience, Physics Department, College of Science, University of Sulaimani, Sulaimani,46001, IraqDivision of Computational Nanoscience, Physics Department, College of Science, University of Sulaimani, Sulaimani,46001, Iraq
Ahmed, Taha Yasin
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Abdullah, Nzar Rauf
Gudmundsson, Vidar
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Science Institute, University of Iceland, Dunhaga 3, Reykjavik,IS-107, IcelandDivision of Computational Nanoscience, Physics Department, College of Science, University of Sulaimani, Sulaimani,46001, Iraq
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Univ Autonoma Madrid, Dept Fis Teor Mat Condensada C V, E-28049 Madrid, SpainUniv Autonoma Madrid, Dept Fis Teor Mat Condensada C V, E-28049 Madrid, Spain
Yeyati, AL
Flores, F
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Univ Autonoma Madrid, Dept Fis Teor Mat Condensada C V, E-28049 Madrid, SpainUniv Autonoma Madrid, Dept Fis Teor Mat Condensada C V, E-28049 Madrid, Spain
Flores, F
Martín-Rodero, A
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Univ Autonoma Madrid, Dept Fis Teor Mat Condensada C V, E-28049 Madrid, SpainUniv Autonoma Madrid, Dept Fis Teor Mat Condensada C V, E-28049 Madrid, Spain