4.7 Article

Theory of Multifarious Quantum Phases and Large Anomalous Hall Effect in Pyrochlore Iridate Thin Films

Journal

SCIENTIFIC REPORTS
Volume 6, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/srep30017

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Funding

  1. NSERC of Canada
  2. Canadian Institute for Advanced Research
  3. Center for Quantum Materials at the University of Toronto
  4. Perimeter Institute for Theoretical Physics
  5. Government of Canada through Industry Canada
  6. Province of Ontario through the ministry of Research and Innovation
  7. Canada Foundation for Innovation under Compute Canada
  8. Government of Ontario
  9. Ontario Research Fund - Research Excellence
  10. University of Toronto

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We theoretically investigate emergent quantum phases in the thin film geometries of the pyrochore iridates, where a number of exotic quantum ground states are proposed to occur in bulk materials as a result of the interplay between electron correlation and strong spin-orbit coupling. The fate of these bulk phases as well as novel quantum states that may arise only in the thin film platforms, are studied via a theoretical model that allows layer-dependent magnetic structures. It is found that the magnetic order develop in inhomogeneous fashions in the thin film geometries. This leads to a variety of magnetic metal phases with modulated magnetic ordering patterns across different layers. Both the bulk and boundary electronic states in these phases conspire to promote unusual electronic properties. In particular, such phases are akin to the Weyl semimetal phase in the bulk system and they would exhibit an unusually large anomalous Hall effect.

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