Published September 1, 1995 | Version v1
Journal article

Superconductivity in lanthanum cuprates: A layered-electron-gas model

  • 1. School of Physics, Devi Ahilya University, Indore 452001 (India)
  • 2. School of Physics, Barkatullah University, Bhopal 462026 (India)

Description

The nature of the superconducting state of lanthanum cuprate superconductor is discussed using strong-coupling theory, when electron-electron, electron-phonon, and electron-plasmon mechanisms are simultaneously present within a layered-electron-gas model. Treating the system as a two-component plasma, the effect of two-dimensional (2D) acoustic phonons as well as plasmons has been investigated. The approach is developed for one conducting copper oxide layer, which is an isolated free-electron layer and is well separated from insulating layers in a unit cell. A pair potential is constructed and the model parameters deduced are used to evaluate the transition temperature (Tc) as a function of Ba and Sr doping. The approach is further applied to estimate the oxygen isotope coefficient α and the energy gap parameter β. From these results it is argued that both 2D acoustic phonons and plasmons generated along the CuO2 layer play a significant role in copper oxide superconductors. In particular, 2D acoustic plasmons strongly influence Tc and there is 60% enhancement over the phonon contribution to Tc. The computed values of Tc, α, and β are consistent with the reported experimental data

Additional details

Publishing Information

Journal Title
Physical Review. B, Condensed Matter
Journal Volume
52
Journal Issue
10
Journal Page Range
p. 7629-7636.
ISSN
0163-1829
CODEN
PRBMDO