Hybrid Kitaev-Yao-Lee models on common lattices produce magnetic order in spins while preserving orbital topological order, and regain exact solvability when Yao-Lee and square-lattice couplings are equal and opposite.
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Spin-polaron quasiparticles explain the leading optical conductivity peak in iridates, reproduced by DMFT and SCBA calculations that also match ARPES features in both undoped and lightly doped Sr2IrO4.
citing papers explorer
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Frustrated magnetic order in hybrid Kitaev spin-orbital models
Hybrid Kitaev-Yao-Lee models on common lattices produce magnetic order in spins while preserving orbital topological order, and regain exact solvability when Yao-Lee and square-lattice couplings are equal and opposite.
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Spin-polaron fingerprints in the optical conductivity of iridates
Spin-polaron quasiparticles explain the leading optical conductivity peak in iridates, reproduced by DMFT and SCBA calculations that also match ARPES features in both undoped and lightly doped Sr2IrO4.