Tuneable electron-magnon coupling of ferromagnetic surface states in PdCoO<sub>2</sub>

  • Mazzola, Federico
  • Yim, Chi-Ming
  • Sunko, Veronika
  • Khim, Seunghyun
  • Kushwaha, Pallavi
  • Clark, Oliver J.
  • Bawden, Lewis
  • Marković, Igor
  • Chakraborti, Dibyashree
  • Kim, Timur K.
  • Hoesch, Moritz
  • Mackenzie, Andrew P.
  • Wahl, Peter
  • King, Philip D. C.
Publication date
February 2022

Abstract

Controlling spin wave excitations in magnetic materials underpins the burgeoning field of magnonics. Yet, little is known about how magnons interact with the conduction electrons of itinerant magnets, or how this interplay can be controlled. Via a surface-sensitive spectroscopic approach, we demonstrate a strong and highly-tuneable electron-magnon coupling at the Pd-terminated surface of the delafossite oxide PdCoO2, where a polar surface charge mediates a Stoner transition to itinerant surface ferromagnetism. We show how the coupling can be enhanced 7-fold with increasing surface disorder, and concomitant charge carrier doping, becoming sufficiently strong to drive the system into a polaronic regime, accompanied by a significant quasiparti...

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