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      Extent of Fermi-surface reconstruction in the high-temperature superconductor HgBa\(_2\)CuO\(_{4+\delta}\)

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          Abstract

          High magnetic fields have revealed a surprisingly small Fermi-surface in underdoped cuprates, possibly resulting from Fermi-surface reconstruction due to an order parameter that breaks translational symmetry of the crystal lattice. A crucial issue concerns the doping extent of this state and its relationship to the principal pseudogap and superconducting phases. We employ pulsed magnetic field measurements on the cuprate HgBa\(_2\)CuO\(_{4+\delta}\) to identify signatures of Fermi surface reconstruction from a sign change of the Hall effect and a peak in the temperature-dependent planar resistivity. We trace the termination of Fermi-surface reconstruction to two hole concentrations where the superconducting upper critical fields are found to be enhanced. One of these points is associated with the pseudogap end-point near optimal doping. These results connect the Fermi-surface reconstruction to both superconductivity and the pseudogap phenomena.

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          Author and article information

          Journal
          12 March 2020
          Article
          2003.05909
          85e3def7-cc3f-4eb6-8cce-c5c5d1020649

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          5 pages. 3 Figures
          cond-mat.supr-con cond-mat.str-el

          Condensed matter
          Condensed matter

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