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Competing orders at higher-order Van Hove points

  • Laura Classen
  • , Andrey V. Chubukov
  • , Carsten Honerkamp
  • , Michael M. Scherer
  • University of Minnesota
  • Brookhaven National Laboratory
  • RWTH Aachen University
  • Jülich Aachen Research Alliance and Fundamentals of Future Information Technology
  • Universität zu Köln

Research output: Contribution to journalArticlepeer-review

80 Scopus citations

Abstract

Van Hove points are special points in the energy dispersion, where the density of states exhibits analytic singularities. When a Van Hove point is close to the Fermi level, tendencies towards density wave orders, Pomeranchuk orders, and superconductivity can all be enhanced, often in more than one channel, leading to a competition between different orders and unconventional ground states. Here we consider the effects from higher-order Van Hove points, around which the dispersion is flatter than near a conventional Van Hove point, and the density of states has a power-law divergence. We argue that such points are present in intercalated graphene and other materials. We use an effective low-energy model for electrons near higher-order Van Hove points and analyze the competition between different ordering tendencies using an unbiased renormalization-group approach. For purely repulsive interactions, we find that two key competitors are ferromagnetism and chiral superconductivity. For a small attractive interaction, we find an unconventional spin Pomeranchuk order, in wich the spin oder parameter winds around the Fermi surface. The supermetal state, predicted for a single higher-order Van Hove point, is an unstable fixed point in our case.

Original languageEnglish
Article number125141
JournalPhysical Review B
Volume102
Issue number12
DOIs
StatePublished - Sep 2020
Externally publishedYes

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