Charge-ordering cascade with spin-orbit Mott dimer states in metallic iridium ditelluride

  • Ko, K.
  • Lee, H.
  • Kim, D.
  • Yang, J.
  • Cheong, S.
  • Eom, M.
  • Kim, J.
  • Gammag, R.
  • Kim, K.
  • Kim, H.
  • Kim, T.
  • Yeom, H.
  • Koo, T.
  • Kim, H.
  • Park, J.
Publication date
June 2015
Publisher
Springer Science and Business Media LLC

Abstract

Spin-orbit coupling results in technologically-crucial phenomena underlying magnetic devices like magnetic memories and energy-efficient motors. In heavy element materials, the strength of spin-orbit coupling becomes large to affect the overall electronic nature and induces novel states such as topological insulators and spin-orbit-integrated Mott states. Here we report an unprecedented charge-ordering cascade in IrTe2 without the loss of metallicity, which involves localized spin-orbit Mott states with diamagnetic Ir4+-Ir4+ dimers. The cascade in cooling, uncompensated in heating, consists of first order-type consecutive transitions from a pure Ir3(+) phase to Ir3+-Ir4(+) charge-ordered phases, which originate from Ir 5d to Te 5p charge tr...

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