Communications Physics (Dec 2022)

Stabilization mechanism of molecular orbital crystals in IrTe2

  • Tobias Ritschel,
  • Quirin Stahl,
  • Maximilian Kusch,
  • Jan Trinckauf,
  • Gaston Garbarino,
  • Volodymyr Svitlyk,
  • Mohamed Mezouar,
  • Junjie Yang,
  • Sang-Wook Cheong,
  • Jochen Geck

DOI
https://doi.org/10.1038/s42005-022-01094-9
Journal volume & issue
Vol. 5, no. 1
pp. 1 – 8

Abstract

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The transition metal dichalcogenide IrTe2 is a candidate system to realise topological superconductivity, a sought-after state which could host Majorana fermions, and hence is of interest to the field of quantum computing. Here, the authors combine high-pressure X-ray diffraction and DFT calculations to investigate the evolution in the crystal- and electronic structure of IrTe2 as a function of pressure, highlighting the role of the Te-Ir-Te bond angle.