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  • Archive: 2009
05 Feb 2009
  • 2009
  • V. 8
  • 1
  • (p.7 - 16)

Superconductivity in strongly correlated electronic systems

Authors:

Plakida, N.

Summary:

A microscopic theory of superconducting pairing within the Hubbard model is discussed. A Dyson equation for the matrix thermodynamic Green function in the Nambu representation for Hubbard operators is derived by applying the Mori-type projection technique for the equation of motion method. The self-energy is calculated in the noncrossing approximation for electron scattering on spin and charge fluctuations induced by kinematic interaction for Hubbard operators. It is shown that perconducting pairing in strongly correlated electronic systems is determined by antiferromagnetic exchange caused by interband hopping and spin fluctuations due to hole motion in one subband.

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BibTeX

@article{ibn_4005,
author = {Plakida, N.M.},
title = {<p>Superconductivity in strongly correlated electronic systems</p>},
journal = {Moldavian Journal of the Physical Sciences},
year = {2009},
volume = {8 (1)},
pages = {7-16},
month = {Feb},
abstract = {(EN) A microscopic theory of superconducting pairing within the Hubbard model is discussed. A Dyson equation for the matrix thermodynamic Green function in the Nambu representation for Hubbard operators is derived by applying the Mori-type projection technique for 
the equation of motion method. The self-energy is calculated in the noncrossing approximation for electron scattering on spin and charge fluctuations induced by kinematic interaction 
for Hubbard operators. It is shown that perconducting pairing in strongly correlated electronic systems is determined by antiferromagnetic exchange caused by interband hopping and 
spin fluctuations due to hole motion in one subband. },
url = {https://ibn.idsi.md/vizualizare_articol/4005},
}

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Dublin Core

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<dc:creator>Plakida, N.M.</dc:creator>
<dc:date>2009-02-05</dc:date>
<dc:description xml:lang='en'>A microscopic theory of superconducting pairing within the Hubbard model is discussed. A Dyson equation for the matrix thermodynamic Green function in the Nambu representation for Hubbard operators is derived by applying the Mori-type projection technique for 
the equation of motion method. The self-energy is calculated in the noncrossing approximation for electron scattering on spin and charge fluctuations induced by kinematic interaction 
for Hubbard operators. It is shown that perconducting pairing in strongly correlated electronic systems is determined by antiferromagnetic exchange caused by interband hopping and 
spin fluctuations due to hole motion in one subband. </dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 8 (1) 7-16</dc:source>
<dc:title><p>Superconductivity in strongly correlated electronic systems</p></dc:title>
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SM ISO690:2012

PLAKIDA, N.. Superconductivity in strongly correlated electronic systems. In: Moldavian Journal of the Physical Sciences. 2009, nr. 1(8), pp. 7-16. ISSN 1810-648X.

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