Magnons in the antiferromagnetic insulator CoTiO<sub>3</sub>

ORAL

Abstract

Dirac materials have been extensively studied in fermionic particle system like graphene and topological insulators. Recently, bosonic Dirac magnons have been reported in the antiferromagnetic insulator CoTiO3, where the magnetic lattice of the Co2+ ions is a stacked honeycomb lattice analogous to graphene lattice. Here we report Raman spectra of multiple magnon modes below the transition temperature, which is consistent with the recent inelastic neutron scattering experiments [1, 2]. We will also discuss magnetic-field and temperature dependence of magnons in this antiferromagnetic insulator.

[1] B. Yuan, et al. Phys. Rev. X 10, 011062 (2020)

[2] M. Elliot, et al. Nat. Comm. 12, 3936 (2021)

*We gratefully acknowledge the support from NSF MRSEC via grant DMR-1720595, NSF DMR-1949701, DMR-2114825, and NSF DMR-1760668.

Presenters

  • Jeongheon Choe

    • University of Texas at Austin

Authors

  • Jeongheon Choe

    • University of Texas at Austin
  • David Lujan

    • University of Texas at Austin
  • Martin A Rodriguez-vega

    • University of Texas at Austin
    • Los Alamos National Laboratory
  • Gaihua Ye

    • Texas Tech University
    • TTU
  • Jiaming He

    • University of Texas at Austin
  • Timothy N Nunley

    • University of Texas at Austin
  • Aritz Leonardo

    • Univ del Pais Vasco
  • M. Arruabarrena

    • Materials Physics Center (CFM)
  • A. Ayuela

    • Materials Physics Center (CFM)
  • Jianshi Zhou

    • University of Texas at Austin
  • Gregory A Fiete

    • Northeastern University
  • Rui He

    • Texas Tech Univ
    • Texas Tech University
  • Xiaoqin (Elaine) Li

    • University of Texas at Austin