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Related papers: c-axis Optical Conductivity in Cuprates

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A simple model of cuprate superconductivity with an electron spectrum prepared by doping is developed. The pair-transfer interaction couples the itinerant band with two components ("hot'' and "cold'') of the defect subsystem. There are…

Superconductivity · Physics 2007-05-23 N. Kristoffel , P. Rubin

The low temperature behaviour of the in-plane and c-axis conductivity of electron-doped cuprates like NCCO is examined; it is shown to be consistent with an isotropic quasiparticle scattering rate and an anisotropic interlayer hopping…

Superconductivity · Physics 2007-05-23 U. Michelucci , A. P. Kampf , A. Pimenov

The cuprate superconductors distinguish themselves from the conventional superconductors in that a small variation in the carrier doping can significantly change the superconducting transition temperature (T_c), giving rise to a…

Superconductivity · Physics 2018-10-31 Y. G. Zhong , J. Y. Guan , X. Shi , J. Zhao , Z. C. Rao , C. Y. Tang , H. J. Liu , G. D. Gu , Z. Y. Weng , Z. Q. Wang , T. Qian , Y. J. Sun , H. Ding

The c-axis optical response of the underdoped cuprates is qualitatively different from its in-plane counterpart. The features of the pseudogap show themselves more prominently in the c-axis than in-plane. We compute both the c-axis and…

Superconductivity · Physics 2013-06-04 Phillip E. C. Ashby , J. P. Carbotte

We consider the effect of interband transitions on the c-axis conductivity, DC resistivity, and thermal conductivity in a plane-chain bilayer model of a cuprate. The relation between the c-axis resistivity and thermal conductivity is…

Condensed Matter · Physics 2007-05-23 W. C. Wu , W. A. Atkinson , J. P. Carbotte

The finite-frequency optical properties of the underdoped cuprates, in both the normal and superconducting state, display features which go beyond a Fermi liquid and a BCS description. We provide an understanding of these properties within…

Superconductivity · Physics 2015-05-13 E. Illes , E. J. Nicol , J. P. Carbotte

We propose a possible scenario for the new metallic conductivity of underdoped and optimally doped cuprates. Charge carriers are assumed to be large polarons which form a Fermi-liquid and Cooper-like pairs below a crossover tempurature…

Superconductivity · Physics 2007-05-23 S. Dzhumanov , E. Dushanov

We studied the temperature dependences of the optical spectra for optimally and underdoped Bi$_2$Sr$_2$Ca$_2$Cu$_3$O$_{10+z}$ single crystals. Similarly to the other cuprates' cases, a gap-like conductivity suppression was observed with…

Within the t-t'-J model, the physical properties of doped cuprates in the superconducting-state are discussed based on the kinetic energy driven superconducting mechanism. We show that the superconducting-state in cuprate superconductors is…

Superconductivity · Physics 2007-06-13 Shiping Feng , Tianxing Ma

We argue that recent measurements on both the superfluid density and the optical conductivity of high-quality LSCO films can be understood almost entirely within the theory of disordered BCS d-wave superconductors. The large scattering…

Superconductivity · Physics 2018-08-22 N. R. Lee-Hone , V. Mishra , D. M. Broun , P. J. Hirschfeld

We discuss the high-temperature superconductivity in copper oxide ceramics. We propose an effective Hamiltonian to describe the dynamics of electrons or holes injected into the copper oxide layers. We show that our approach is able to…

Superconductivity · Physics 2012-11-08 Paolo Cea

We propose a simple model which accounts for the major features and systematics of experiments on the $c$-axis resistivity, $\rho_c$, for $\lsco$, $\ybco$ and $\bsco $. We argue that the $c$-axis resistivity can be separated into…

Condensed Matter · Physics 2016-08-31 Yuyao Zha , S. L. Cooper , David Pines

We investigate the properties of cuprate superconductors subject to applied current, using modified Gutzwiller projected d-wave BCS states. The parent states include quasiparticle and quasihole pockets, of variationally determined size,…

Superconductivity · Physics 2010-07-15 Lilach Goren , Ehud Altman

The magnetic susceptibility of high-T_c superconductors is investigated in the normal state using a coupled bilayer model. While this model describes in a natural way the normal-state pseudogaps seen in c-axis optical conductivity on…

Condensed Matter · Physics 2009-10-30 W. C. Wu , B. W. Statt , Ya-Wei Hsueh , J. P. Carbotte

The frequency- and temperature-dependent optical conductivity of the copper oxide materials in the underdoped and optimal doped regimes are studied within the t-J model. The conductivity spectrum shows the unusual behavior at low energies…

Condensed Matter · Physics 2009-10-31 Zhongbing Huang , Shiping Feng

Understanding the physical properties of unconventional superconductors as well as of other correlated materials presents a formidable challenge. Their unusual evolution with doping, frequency, and temperature has frequently led to…

We examine the momentum and energy dependence of the scattering rate of the high temperature cuprate superconductors using angle resolved photoemission spectroscopy. The scattering rate is of the form a + bw around the Fermi surface for…

Understanding the origin of electron incoherence is the first step toward a theoretical description of the non-Fermi liquid behavior of the high-T$_{c}$ cuprate superconductors. Such electron incoherence manifests itself most evidently in…

Strongly Correlated Electrons · Physics 2024-01-02 Jianhua Yang , Tao Li

The superconducting properties of a recently proposed phenomenological model for a weakly doped antiferromagnet are analyzed, taking into account fluctuations of the phase of the order parameter. In this model, we assume that the doped…

Superconductivity · Physics 2009-11-11 V. M. Loktev , V. M. Turkowski

We summarize key experimental studies of the low energy properties of overdoped cuprate high temperature superconductors and conclude that a theoretical understanding of the ``essential physics" is achievable in terms of a conventional…

Superconductivity · Physics 2026-02-13 B. J. Ramshaw , Steven A. Kivelson