Issues

 / 

2009

 / 

October

  

Reviews of topical problems


Study of layered superconductors in the theory of an electron — phonon coupling mechanism


Institute of Physics, National Academy of Sciences of Azerbaijan, prosp. H. Davida 33, Baku, 1143, Azerbaijan

We summarize a number of recent developments in the study of layered superconductors using the electron — phonon Eliashberg theory. The critical temperature of layered superconductors is calculated using the Eliashberg theory. The influence of nonadiabaticity effects on the critical temperature in layered superconductors is considered. The influence of Coulomb repulsion on the critical temperature is investigated in the case of an arbitrary thicknesses of conducting layers. Bardeen — Cooper — Schrieffer (BCS) equations for layered superconductors are used for the calculation of a specific heat jump, which is smaller than in the case of an isotropic BCS theory. The plasmon spectrum of layered superconductors with an arbitrary thicknesses of conducting layers is calculated. The influence of fluctuations in the order parameter phase on the critical temperature of layered superconductors is studied using the Ginzburg — Landau functional for the free energy. The results are shown to be in qualitative agreement with some experimen- tal data for cuprate superconductors and recently discovered MgB2.

Fulltext pdf (267 KB)
Fulltext is also available at DOI: 10.3367/UFNe.0179.200910a.1033
PACS: 74.20.−z, 74.70.Ad, 74.78.Fk (all)
DOI: 10.3367/UFNe.0179.200910a.1033
URL: https://ufn.ru/en/articles/2009/10/a/
000274503800001
2-s2.0-78650952534
2009PhyU...52..977A
Citation: Askerzade I N "Study of layered superconductors in the theory of an electron — phonon coupling mechanism" Phys. Usp. 52 977–988 (2009)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Аскерзаде И Н «Исследование слоистых сверхпроводников в рамках теории с электрон-фононным механизмом спаривания» УФН 179 1033–1045 (2009); DOI: 10.3367/UFNr.0179.200910a.1033

References (87) Cited by (15) ↓ Similar articles (20)

  1. Alarco J A, Mackinnon I D R Condensed Matter 8 72 (2023)
  2. Ragimov S S, Askerzade I N, Agaeva G I 47 106 (2021)
  3. Alarco J A, Gupta B et al Phys. Chem. Chem. Phys. 23 23922 (2021)
  4. Bezotosnyi P I, Dmitrieva K A et al IEEE Trans. Appl. Supercond. 31 1 (2021)
  5. Askerzade I N Physica C: Superconductivity And Its Applications 574 1353647 (2020)
  6. Ragimov S S, Askerzade I N, Agayeva G I J Supercond Nov Magn 32 3033 (2019)
  7. Askerzade I N, Askerbeyli R T Mod. Phys. Lett. B 33 1950102 (2019)
  8. Askerzade I N, Güzel M S J Supercond Nov Magn 32 1921 (2019)
  9. Askerbeyli R T T, Askerzade I N J Supercond Nov Magn 32 1871 (2019)
  10. Askerzade I N, Askerbeyli R T T J Supercond Nov Magn 31 1043 (2018)
  11. Askerzade I N Physica C: Superconductivity And Its Applications 547 27 (2018)
  12. Agassi Y D, Oates D E Supercond. Sci. Technol. 30 115015 (2017)
  13. Askerzade I N J Supercond Nov Magn 30 1655 (2017)
  14. Zhilyaev I J Supercond Nov Magn 28 327 (2015)
  15. Zhilyaev I N 38 1063 (2012)

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions