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Phys. Rev. B 78, 035331 (2008) [8 pages]

Electron transport through a quantum dot in the Coulomb blockade regime: Nonequilibrium Green’s function based model

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Natalya A. Zimbovskaya
Department of Physics and Electronics, University of Puerto Rico-Humacao, CUH Station, Humacao, Puerto Rico 00791, USA; Institute for Functional Nanomaterials, University of Puerto Rico, San Juan, Puerto Rico 00931, USA; and Institute for Nanoelectronics and Computing, School of Electrical and Computer Engineering, Purdue University, 465 NW Avenue, West Lafayette, Indiana 47907, USA

Received 27 December 2007; revised 22 March 2008; published 28 July 2008

We explore electron transport through a quantum dot coupled to the source and drain charge reservoirs. We trace the transition from the Coulomb blockade regime to Kondo regime in the electron transport through the dot occurring when we gradually strengthen the coupling of the dot to the charge reservoirs. The current-voltage (I-V) characteristics are calculated using the equations of motion approach within the nonequilibrium Green’s function formalism beyond the Hartree-Fock approximation. We show that within the Coulomb blockade regime the I-V characteristics for the quantum dot containing a single spin-degenerated level with the energy E0 include two steps whose locations are determined by the values of E0 and the energy of Coulomb interaction of electrons in the dot U. The heights of the steps are related as 2:1 which is consistent with the results obtained by means of the transition rate equations.

© 2008 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.78.035331
DOI:
10.1103/PhysRevB.78.035331
PACS:
73.23.Hk, 72.10.Di, 73.63.−b