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Fizika Tverdogo Tela, 2019 Volume 61, Issue 9, Pages 1603–1608 (Mi ftt8695)

This article is cited in 5 papers

XXIII International Symposium ''Nanophysics and Nanoelectronics'', Nizhny Novgorod, March 11--14, 2019
Superconductivity

Electron-hole dimers in parent phase of quasi-2D cuprates

A. S. Moskvin, Yu. D. Panov

Ural Federal University, Yekaterinburg, Russia

Abstract: The key feature of parent cuprates of the La$_2$CuO$_4$ type, in addition to their high ionic polarizability and closeness to polarization catastrophe, is identified as their instability against charge transfer that is accompanied by the formation of a system of metastable dipole-active Mott–Hubbard excitons, i.e., electron–hole (EH) dimers. This feature determines the behavior of cuprates upon nonisovalent substitution. Within the simplest model equivalent to a system of composite bosons, nonisovalent substitution shifts the phase equilibrium toward condensation of EH dimers and the formation of inhomogeneous EH liquid. To describe the electronic state of doped cuprates effectively, we propose to use the pseudospin $S$ = 1 formalism. It enables us to treat cardinally new charged states such as Anderson’s RVB phases. Recombination of EH dimers at a critically low energy of local and nonlocal correlations drives the system into the state of a Fermi liquid.

Keywords: cuprates, electronic structure, electron-hole dimers.

Received: 15.04.2019
Revised: 22.04.2019
Accepted: 24.04.2019

DOI: 10.21883/FTT.2019.09.48097.27N


 English version:
Physics of the Solid State, 2019, 61:9, 1553–1558

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