Extent of Fermi-surface reconstruction in the high-temperature superconductor HgBa2CuO4+δ.

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 such a state and its relationship to the principal pseudogap and superconducting phases. We employ pulsed magnetic-field measurements on the cuprate [Formula: see text]Cu[Formula: see text] 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 endpoint near optimal doping. These results connect the Fermi-surface reconstruction to both superconductivity and the pseudogap phenomena.

authors

Chan MK,McDonald RD,Ramshaw BJ,Betts JB,Shekhter A,Bauer ED,Harrison N

doi

10.1073/pnas.1914166117

subject

Has Abstract

pub_date

2020-05-05 00:00:00

pages

9782-9786

issue

18

eissn

0027-8424

issn

1091-6490

pii

1914166117

journal_volume

117

pub_type

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