Approaching Large Ud High-Tc Cuprates from the Covalent Side

[1]  N. Plakida High-Temperature Cuprate Superconductors , 2010 .

[2]  D. K. Sunko,et al.  Destabilization of the Zhang-Rice singlet at optimal doping , 2009, 0904.3451.

[3]  M. Ferrero,et al.  Pseudogap opening and formation of Fermi arcs as an orbital-selective Mott transition in momentum space , 2009, 0903.2480.

[4]  H. Kontani Anomalous transport phenomena in Fermi liquids with strong magnetic fluctuations , 2007, 0711.1693.

[5]  S. Parkin,et al.  Handbook of magnetism and advanced magnetic materials , 2007 .

[6]  P. Anderson Is There Glue in Cuprate Superconductors? , 2007, Science.

[7]  S. Barǐsić,et al.  Electronic pseudogap of optimally doped high-temperature Nd2−xCexCuO4 superconductors , 2007 .

[8]  S. Barǐsić,et al.  Electronic Raman scattering in a multiband model for cuprate superconductors , 2006, cond-mat/0605108.

[9]  M. Norman,et al.  High-temperature Superconductivity—Magnetic Mechanisms , 2006, cond-mat/0609559.

[10]  G. Sawatzky,et al.  Physics of cuprates with the two-band hubbard model : The validity of the one-band hubbard model , 2004, cond-mat/0411092.

[11]  N. Nagaosa,et al.  Doping a Mott insulator: Physics of high-temperature superconductivity , 2004, cond-mat/0410445.

[12]  E. Fradkin,et al.  How to detect fluctuating stripes in the high-temperature superconductors , 2003 .

[13]  M. Kohmoto,et al.  On the nature of antiferromagnetism in the CuO planes of oxide superconductors , 2002, cond-mat/0204337.

[14]  Kazuo Ueda,et al.  Spin fluctuations and high temperature superconductivity , 2000 .

[15]  T. Pruschke,et al.  Electronic properties of CuO2-planes: A DMFT study , 2000 .

[16]  P. Anderson A re-examination of concepts in magnetic metals: The ‘nearly antiferromagnetic Fermi liquid’ , 1997 .

[17]  S. Barǐsić,et al.  The effect of large Ud on the Raman spectrum in the copper-oxide superconductors , 1995, cond-mat/9502010.

[18]  K. Levin,et al.  Comparison of spin dynamics in YBa 2 Cu 3 O 7 − δ and La 2 − x Sr x CuO 4 : Effects of Fermi-surface geometry , 1993 .

[19]  W. Geertsma Exchange interactions in insulators and semiconductors: I. The cation-anion-cation three-center model , 1990 .

[20]  S. Barǐsić,et al.  Electron mechanism for the structural phase transitions in La2−xBaxCuO4 , 1990 .

[21]  Schulz Incommensurate antiferromagnetism in the two-dimensional Hubbard model. , 1990, Physical review letters.

[22]  J. Friedel The high-Tc superconductors: a conservative view , 1989 .

[23]  Kim,et al.  Assessment of Fermi-liquid description for the normal state of high-Tc superconductors. , 1989, Physical review. B, Condensed matter.

[24]  Zhang,et al.  Effective Hamiltonian for the superconducting Cu oxides. , 1988, Physical review. B, Condensed matter.

[25]  G. Montambaux,et al.  Antiferromagnetism and superconductivity in a quasi two-dimensional electron gas. Scaling theory of a generic Hubbard model , 1987 .

[26]  Emery,et al.  Theory of high-Tc superconductivity in oxides. , 1987, Physical review letters.

[27]  J. Labbé,et al.  Superconductivity in Alcaline-Earth-Substituted La2CuO4: A Theoretical Model , 1987 .

[28]  L. B. Okun,et al.  On the Possibility of Pauli Principle Violation in Atoms , 1987 .

[29]  Piers Coleman,et al.  New approach to the mixed-valence problem , 1984 .

[30]  V. J. Emery,et al.  Electron-electron umklapp scattering in organic superconductors , 1982 .

[31]  J. Friedel,et al.  Effet de la température sur l'instabilité électronique et le changement de phase cristalline des composés du type V3Si à basse température , 1966 .

[32]  J. Friedel,et al.  Instabilité électronique et changement de phase cristalline des composés du type V3Si à basse température , 1966 .

[33]  J. Kanamori,et al.  Electron Correlation and Ferromagnetism of Transition Metals , 1963 .

[34]  J. Garland Isotope Effect in Superconductivity , 1963 .