Scinovex
article Open AccessTop 1% cited

Correlated electrons in high-temperature superconductors

Reviews of Modern Physics · 1994 · Vol. 66(3) · pp. 763–840
Elbio Dagotto

Abstract

Theoretical ideas and experimental results concerning high-temperature superconductors are reviewed. Special emphasis is given to calculations performed with the help of computers applied to models of strongly correlated electrons proposed to describe the two-dimensional Cu${\mathrm{O}}_{2}$ planes. The review also includes results using several analytical techniques. The one- and three-band Hubbard models and the $t\ensuremath{-}J$ model are discussed, and their behavior compared against experiments when available. The author found, among the conclusions of the review, that some experimentally observed unusual properties of the cuprates have a natural explanation through Hubbard-like models. In particular, abnormal features like the mid-infrared band of the optical conductivity $\ensuremath{\sigma}(\ensuremath{\omega})$, the new states observed in the gap in photoemission experiments, the behavior of the spin correlations with doping, and the presence of phase separation in the copper oxide superconductors may be explained, at least in part, by these models. Finally, the existence of superconductivity in Hubbard-like models is analyzed. Some aspects of the recently proposed ideas to describe the cuprates as having a ${d}_{{x}^{2}\ensuremath{-}{y}^{2}}$ superconducting condensate at low temperatures are discussed. Numerical results favor this scenario over others. It is concluded that computational techniques provide a useful, unbiased tool for studying the difficult regime where electrons are strongly interacting, and that considerable progress can be achieved by comparing numerical results against analytical predictions for the properties of these models. Future directions of the active field of computational studies of correlated electrons are briefly discussed.

Physics of Superconductivity and MagnetismAdvanced Condensed Matter PhysicsMagnetic and transport properties of perovskites and related materialsCuprateSuperconductivityHubbard modelCondensed matter physicsElectronPhysicsHigh-temperature superconductivityCopper oxideStatistical physicsQuantum mechanics
Citations
3,104
FWCI
77.26
field-weighted impact
References
413
Percentile
100%
vs. same field & year
Citations per year
Cited by
LDA energy bands, low-energy hamiltonians, t′, t″, t⊥ (k), and J⊥
Journal of Physics and Chemistry of Solids · 1995 · 760 citations
Angle-resolved photoemission studies of the cuprate superconductors
Reviews of Modern Physics · 2003 · 3,694 citations
Metal-insulator transitions
Reviews of Modern Physics · 1998 · 7,415 citations
Doping a Mott insulator: Physics of high-temperature superconductivity
Reviews of Modern Physics · 2006 · 4,435 citations
Entanglement in many-body systems
Reviews of Modern Physics · 2008 · 3,629 citations
References
Effective Hamiltonian for the superconducting Cu oxides
Physical review. B, Condensed matter · 1988 · 3,366 citations
Superconductivity, Spin Gaps and Luttinger Liquids in a Class of Cuprates
Europhysics Letters (EPL) · 1993 · 460 citations
Theory of Superconductivity
Physical Review · 1957 · 12,841 citations
Electron correlations in narrow energy bands
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1963 · 6,560 citations
Electron correlations in narrow energy bands III. An improved solution
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1964 · 1,986 citations
Charge transfer excitations and superconductivity in “ionic” metals
Solid State Communications · 1987 · 944 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.