4 A ug 2 00 4 Experimental Investigation of the Competing Orders and Quantum Criticality in Hole - and Electron - Doped Cuprate Superconductors
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چکیده
We investigate the issues of competing orders and quantum criticality in cuprate super-conductors via experimental studies of the high-field thermodynamic phase diagrams and the quasiparticle tunneling spectroscopy. Our results suggest substantial field-induced quantum fluctuations in all cuprates investigated, and their correlation with quasiparticle spectra implies that both electron-(n-type) and hole-doped (p-type) cuprate superconductors are in close proximity to a quantum critical point that separates a pure superconducting (SC) phase from a phase consisting of coexisting SC and a competing order. We further suggests that the relevant competing order is likely a spin-density wave (SDW) or a charge density wave (CDW), which can couple to an in-plane Cu-O bond stretching longitudinal optical (LO) phonon mode in the p-type cuprates but not in the n-type cuprates. This cooperative interaction may account for the pseudogap phenomenon above T c only in the p-type cuprate superconductors.
منابع مشابه
Phase Diagrams of Cuprate Superconductors – an Investigation of Competing Orders and Quantum Criticality
We present scanning tunneling spectroscopic and high-field thermodynamic studies of holeand electron-doped (pand n-type) cuprate superconductors. Our experimental results are consistent with the notion that the ground state of cuprates is in proximity to a quantum critical point (QCP) that separates a pure superconducting (SC) phase from a phase comprised of coexisting SC and a competing order,...
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تاریخ انتشار 2008