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Updated: Sep 30, 2025

Visualizing Uniaxial-strain Manipulation of Antiferromagnetic Domains in Fe1+YTe Using a Spin-polarized Scanning Tunneling Microscope
Published on: March 24, 2019
Resilient Fermi Liquid and Strength of Correlations near an Antiferromagnetic Quantum Critical Point
C Gauvin-Ndiaye1, M Setrakian1, A-M S Tremblay1
1Département de Physique, Institut quantique, and RQMP Université de Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.
Abstract:
Near the antiferromagnetic quantum critical point (QCP) of electron-doped cuprate superconductors, angle-resolved photoemission experiments detect hot spots where the Fermi surface disappears. Here, we demonstrate, using the two-particle self-consistent theory, that in the antinodal region the Fermi liquid remains stable for a broad range of angles on the Fermi surface and for all dopings near the QCP. We show how the quasiparticle weight Z and effective mass m^{*} change and then abruptly become meaningless as the hot spots are approached. We propose a dimensionless number, easily accessible in ARPES experiments, that can be used to gauge the strength of correlations.
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