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Structure of the charge density wave in cuprate superconductors: Lessons from NMR

W. A. Atkinson, S. Ufkes, A. P. Kampf

DOI 10.1103/PhysRevB.97.125147 · Physical Review B

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Abstract

Using a mix of numerical and analytic methods, we show that recent NMR O17 measurements provide detailed information about the structure of the charge-density wave (CDW) phase in underdoped YBa2Cu3O6+x. We perform Bogoliubov-de Gennes (BdG) calculations of both the local density of states and the orbitally resolved charge density, which are closely related to the magnetic and electric quadrupole contributions to the NMR spectrum, using a microscopic model that was shown previously to agree closely with x-ray experiments. The BdG results reproduce qualitative features of the experimental spectrum extremely well. These results are interpreted in terms of a generic “hot-spot” model that allows one to trace the origins of the NMR line shapes. We find that four quantities—the orbital character of the Fermi surface at the hot spots, the Fermi surface curvature at the hot spots, the CDW correlation length, and the magnitude of the subdominant CDW component—are key in determining the line shapes.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
YBa2Cu3O6+x

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—Pressure not reportedunknown
Bi2Sr2CaCu2O8+δ

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—Pressure not reportedunknown
Bi2-yPbySr2-zLazCuO6+x

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—Pressure not reportedunknown
HgBa2CuO4+δ

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—Pressure not reportedunknown
La1.875Ba0.125CuO4

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—Pressure not reportedunknown
YBa2Cu3O6.56

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown

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