Crystal electric field and properties of 4f magnetic moments at the surface of the rare-earth compound TbRh2Si2

Publikation: Beitrag in FachzeitschriftForschungsartikelBeigetragenBegutachtung

Beitragende

  • Artem V. Tarasov - , St. Petersburg State University (Autor:in)
  • Daria Glazkova - , St. Petersburg State University (Autor:in)
  • Susanne Schulz - , Professur für Ultraschnelle Festkörperphysik und Photonik, Seniorprofessor für Oberflächenphysik (Autor:in)
  • Georg Poelchen - , Professur für Oberflächenphysik (Autor:in)
  • Kristin Kliemt - , Universitätsklinikum Frankfurt (Autor:in)
  • Alexej Kraiker - , Universitätsklinikum Frankfurt (Autor:in)
  • Matthias Muntwiler - , Paul Scherrer Institute (Autor:in)
  • Clemens Laubschat - , Seniorprofessor für Oberflächenphysik (Autor:in)
  • Alexander Generalov - , Lund University (Autor:in)
  • Craig Polley - , Lund University (Autor:in)
  • Cornelius Krellner - , Universitätsklinikum Frankfurt (Autor:in)
  • Denis V. Vyalikh - , Donostia International Physics Center (Autor:in)
  • Dmitry Yu. Usachov - , St. Petersburg State University (Autor:in)

Abstract

The crystal electric field (CEF) plays an essential role in defining the magnetic properties of 4⁢𝑓 materials. It forces the charge density of 4⁢𝑓 electrons and the related magnetic moment to be oriented along a certain direction in the crystal. The CEF and related magnetic properties were widely studied in the past with focus on bulk of 4⁢𝑓 materials, while their surfaces have not received much attention. By the example of the antiferromagnetic material TbRh2⁢Si2 and using first-principles calculations and classical 4⁢𝑓 angle-resolved photoemission (PE) measurements, we show how the CEF and related magnetic properties, linked with the orientation of 4⁢𝑓 moments, are modified at the surface region. Precisely, we studied the CEF characteristics in individual Tb layers for Tb- and Si-terminated surfaces of TbRh2⁢Si2. We show how strongly the CEF changes near the surface and how dramatically it influences the orientation of the 4⁢𝑓 moments relative to the bulk. The instructive message of our study is that a rather valuable information about the CEF-related phenomena can be derived from the temperature dependence of 4⁢𝑓 PE spectra. The presented methodology including the theoretical approach can be further applied to many other layered and quasi-2D rare-earth-based materials for unveiling their surface magnetic properties.

Details

OriginalspracheEnglisch
Aufsatznummer155136
Seitenumfang12
FachzeitschriftPhysical Review: B, Condensed Matter and Materials Physics
Jahrgang106
Ausgabenummer15
PublikationsstatusVeröffentlicht - 15 Okt. 2022
Peer-Review-StatusJa

Externe IDs

Scopus 85140722826

Schlagworte

Forschungsprofillinien der TU Dresden

DFG-Fachsystematik nach Fachkollegium

Bibliotheksschlagworte