Condensation energy, charge ordering and inter-layer coupling in cuprates
Abstract
The correlation between the condensation energy and the critical temperature is studied within a charge ordered superlattice bilayer model in which pairing is supported by inter-layer Coulomb energy gain (potential energy driven superconductivity).The 2D pair-condensate can be characterized by a charge ordered state with a "checkerboard" like pattern seen by scanning tunneling microscopy.The drop of the c-axis dielectric screening can be the primary source of the condensation energy at optimal doping.We find that Coulomb energy gain occurs along the c-axis, which is proportional to the measured condensation energy () and to : and is due to inter-layer charge complementarity (charge asymmetry of the boson condensate)where is the coherence length of the condensate and is the in-plane lattice c onstant.The static c-axis dielectric constant is calculated for various cuprates and compared with the available experimental data.
Cite
@article{arxiv.cond-mat/0303585,
title = {Condensation energy, charge ordering and inter-layer coupling in cuprates},
author = {P. Süle},
journal= {arXiv preprint arXiv:cond-mat/0303585},
year = {2016}
}
Comments
4 pages, 2 figures