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Magnetism in spin models for depleted honeycomb-lattice iridates: Spin-glass order towards percolation
Iridates are characterized by a fascinating interplay of spin-orbit and
electron-electron interactions. The honeycomb-lattice materials A2IrO3
(A=Na,Li) have been proposed to realize pseudospin-1/2 Mott insulating states
with strongly anisotropic exchange interactions, described by the
Heisenberg-Kitaev model, but other scenarios involving longer-range exchange
interactions or more delocalized electrons have been put forward as well. Here
we study the influence of non-magnetic doping, i.e., depleted moments, on the
magnetic properties of experimentally relevant variants of the
Heisenberg-Kitaev and Heisenberg J1-J2-J3 models. We generically find that the
zigzag order of the clean system is replaced, upon doping, by a spin-glass
state with short-ranged zigzag correlations. We determine the spin-glass
temperature as function of the doping level and argue that this quantity allows
to experimentally distinguish the different proposed spin models when the
doping is driven across the site percolation threshold of the honeycomb
lattice.Comment: 6 pages, 4 figures. Published versio
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