Publication | Open Access
Signature of Superfluid Density in the Single-Particle Excitation Spectrum of Bi <sub>2</sub> Sr <sub>2</sub> CaCu <sub>2</sub> O <sub>8+δ</sub>
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2000
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Quantum LiquidSuperconducting MaterialSingle-particle Excitation SpectrumEngineeringPhotoemission Peak IntensitySuperfluid DensitySuperconductivityQuantum MaterialsHigh Tc SuperconductorsUltracold AtomLow-temperature SuperconductivityHigh-tc SuperconductivityPhysicsBose-einstein CondensationHigh-temperature SuperconductivityNatural SciencesParticle PhysicsApplied PhysicsCondensed Matter PhysicsCondensation EnergyQuantum Superconductivity
We report that the doping and temperature dependence of photoemission spectra near the Brillouin zone boundary of Bi(2)Sr(2)CaCu(2)O(8+delta)exhibit unexpected sensitivity to the superfluid density. In the superconducting state, the photoemission peak intensity as a function of doping scales with the superfluid density and the condensation energy. As a function of temperature, the peak intensity shows an abrupt behavior near the superconducting phase transition temperature where phase coherence sets in, rather than near the temperature where the gap opens. This anomalous manifestation of collective effects in single-particle spectroscopy raises important questions concerning the mechanism of high-temperature superconductivity.
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