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High-Tc superconductivity: XX years after the discovery
Guest Editors: V. Loktev, H. Beck, and V. Samovarov


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  Preface (378-380)

General Aspects


P.W. Anderson

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  Present status of the theory of the high-Tc cuprates (381-390)


G. Alvarez1, A. Moreo2, and E. Dagotto2

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  Complexity in high-temperature superconductors (391-400)


A.A. Kordyuk1,2 and S.V. Borisenko2

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  ARPES on high-temperature superconductors:simplicity vs. complexity (401-410)


Marcin Raczkowski1,2, Andrzej M. Oleś 1, and Raymond Frésard 2

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  Stripe phases - possible ground state of the high-Tc superconductors (411-429)


J. Lorenzana1 and G. Seibold2

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  Dynamic properties of inhomogeneous states in cuprates (430-454)


L. Pietronero and E. Cappelluti

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  Nonadiabatic breakdown and pairing in high-Tc compounds (455-478)

Spin Models


J.R. Schrieffer

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  Gauge theory of pairing and spin fluctuations near the quantum critical point and superhigh-temperature superconductivity (479-482)


N.M. Plakida

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  Theory of antiferromagnetic pairing in cuprate superconductors (483-498)


A. Sherman1 and M. Schreiber2

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  Spin dynamics in cuprate perovskites (499-504)


N. Dupuis1,2, C. Bourbonnais3, and J.C. Nickel2,3

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  Superconductivity and antiferromagnetism in quasi-one-dimensional organic conductors (505-520)


T. Schneider

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  Magnetic field induced finite size effect in type-II superconductors (521-527)



E.Z. Kuchinskii, I.A. Nekrasov, and M.V. Sadovskii

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  Pseudogaps: introducing the length scale into dynamical mean-field theory (528-537)


Qijin Chen1, Jelena Stajic2, and K. Levin1

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  Applying BCS-BEC crossover theory to high-temperature superconductors and ultracold atomic Fermi gases (538-560)


A.-M.S. Tremblay, B. Kyung, and D. Sénéchal

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  Pseudogap and high-temperature superconductivity from weak to strong coupling. Towards quantitative theory (561-595)


E.A. Pashitskii and V.I. Pentegov

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  The role of the Coulomb interaction in the formation of superconducting and pseudogap states in cuprate metal-oxides (596-601)

Strong Correlations


C. Dahnken1, M. Potthoff1, E. Arrigoni2, and W. Hanke1,3

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  Correlated band structure of electron-doped cuprate materials (602-608)


V.A. Moskalenko1,2, P. Entel3, and D.F. Digor1

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  Interaction of strongly correlated electrons and acoustical phonons (609-633)


S.G. Ovchinnikov, V.A. Gavrichkov, M.M. Korshunov, and E.I. Shneyder

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  Electron structure and electron-phonon interaction in the strongly correlated electron system of cuprates (634-640)

Experimental Methods and Applications


N.L. Bobrov, S.I. Beloborod`ko, L.V. Tyutrina, V.N. Chernobay, I.K. Yanson, D.G. Naugle and K.D.D. Rathnayaka

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  Investigation of the superconducting energy gap in the compound LuNi2B2C by the method of point contact spectroscopy: two-gap approximation (641-650)


V.M. Pan, O.A. Kalenyuk, O.L. Kasatkin, V.A. Komashko, O.M. Ivanyuta and G.A. Melkov

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  Microwave response of single crystal YBa2Cu3O7-d films as a probe for pairing symmetry (651-660)


T.A. Prikhna

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  Modern superconductive materials for electrical machines and devices working on the principle of levitation (661-676)