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Field-induced QCD3 -Chern-Simons quantum criticalities in Kitaev materials

  • Harvard University
  • Massachusetts Institute of Technology

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Kitaev materials are promising for realizing exotic quantum spin liquid phases, such as a non-Abelian chiral spin liquid. Motivated by recent experiments in these materials, we theoretically study the novel field-induced quantum phase transitions from the non-Abelian chiral spin liquid to the symmetry-broken zigzag phase and to the trivial polarized state. Utilizing the recently developed dualities of gauge theories, we find these transitions can be described by critical bosons or gapless fermions coupled to emergent non-Abelian gauge fields, and the critical theories are of the type of a QCD3-Chern-Simons theory. We propose that all these exotic quantum phase transitions can potentially be direct and continuous in Kitaev materials, and we present sound evidence for this proposal. Therefore, besides being systems with intriguing quantum magnetism, Kitaev materials may also serve as table-top experimental platforms to study the interesting dynamics of emergent strongly interacting quarks and gluons in 2+1 dimensions.

Original languageEnglish
Article number013072
JournalPhysical Review Research
Volume2
Issue number1
DOIs
StatePublished - Jan 2020

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