Universal sheet resistance and revised phase diagram of the cuprate high-temperature superconductors
arXiv:1207.1504 · doi:10.1073/pnas.1301989110
Abstract
Upon introducing charge carriers into the copper-oxygen sheets of the enigmatic lamellar cuprates the ground state evolves from an insulator into a superconductor, and eventually into a seemingly conventional metal (a Fermi liquid). Much has remained elusive about the nature of this evolution and about the peculiar metallic state at intermediate hole-carrier concentrations (p). The planar resistivity of this unconventional metal exhibits a linear temperature dependence (ρ T) that is disrupted upon cooling toward the superconducting state by the opening of a partial gap (the pseudogap) on the Fermi surface. Here we first demonstrate for the quintessential compound HgBaCuO a dramatic switch from linear to purely quadratic (Fermi-liquid-like, ρ T) resistive behavior in the pseudogap regime. Despite the considerable variation in crystal structures and disorder among different compounds, our result together with prior work gives new insight into the p-T phase diagram and reveals the fundamental resistance per copper-oxygen sheet in both linear (ρ_S = A_{1S} T) and quadratic (ρ_S = A_{2S} T) regimes, with A_{1S} A_{2S} 1/p. Theoretical models can now be benchmarked against this remarkably simple universal behavior. Deviations from this underlying behavior can be expected to lead to new insights into the non-universal features exhibited by certain compounds.
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Cited by in corpus (107)
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- Holographic duality and the resistivity of strange metals
- Universal quantum oscillations in the underdoped cuprate superconductors
- Scalable T^2 resistivity in a small single-component Fermi surface
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- Transport and Optical Conductivity in the Hubbard Model: A High-Temperature Expansion Perspective
- Angle-resolved photoemission spectroscopy study of HgBaCuO
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- Non-Fermi liquid phase and linear-in-temperature scattering rate in overdoped two dimensional Hubbard model
- Hole-pocket-driven superconductivity and its universal features in the electron-doped cuprates
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- Bad-Metallic Behavior of Doped Mott Insulators
- Photo-enhanced antinodal conductivity in the pseudogap state of high Tc cuprates
- Probing the phase diagram of cuprates with YBaCuO thin films and nanowires
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- Resistivity phase diagram of cuprates revisited
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- Mapping the phase diagram of a YBaCuO nanowire through electromigration
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- Calculations of some doping nanostructurations and patterns improving the functionality of high-temperature superconductors for bolometer device applications
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- Stranger than Metals
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- Universal quantum transition from superconducting to insulating states in pressurized Bi2Sr2CaCu2O8+δ superconductors
- Landau Quasiparticles in Weak Power-Law Liquids
- PhD Thesis: Electronic correlations in multiorbital systems