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Two-Magnon Bound States in the Kitaev Model in a [111]-Field

ORAL

Abstract

It is now well established that the Kitaev honeycomb model in a magnetic field along the [111]-direction harbors an intermediate gapless quantum spin liquid (QSL) phase sandwiched between a gapped non-abelian QSL at low fields H<Hc1 and a partially polarized phase at high fields H>Hc2. Here, we analyze the low field and high field phases and phase transitions in terms of single- and two-magnon excitations using exact diagonalization (ED) and density matrix renormalization group (DMRG) methods. We find that the energy to create a bound state of two-magnons Δp becomes lower than the energy to create a single spin flip Δs near Hc2. In the entire Kitaev spin liquid Δps and both gaps vanish at Hc2. We make testable predictions for magnon pairing that could be observable in Raman scattering measurements on Kitaev QSL candidate materials.

Presenters

  • Subhasree Pradhan

    Ohio State Univ - Columbus

Authors

  • Subhasree Pradhan

    Ohio State Univ - Columbus

  • Niravkumar Patel

    Department of Physics, The Ohio State University, Ohio State Univ - Columbus

  • Nandini Trivedi

    Department of Physics, Ohio State Univ - Columbus, Physics, The Ohio State University, The Ohio State University, Ohio State Univ Columbus, Ohio State University, Ohio State Univ - Columbus, Physics, Ohio State University