Strongly frustrated triangular spin lattice emerging from triplet dimer formation in honeycomb Li2IrO3

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作者
Satoshi Nishimoto
Vamshi M. Katukuri
Viktor Yushankhai
Hermann Stoll
Ulrich K. Rößler
Liviu Hozoi
Ioannis Rousochatzakis
Jeroen van den Brink
机构
[1] Institute for Theoretical Solid State Physics,Department of Physics
[2] IFW Dresden,undefined
[3] Joint Institute for Nuclear Research,undefined
[4] Max-Planck-Institut für Physik komplexer Systeme,undefined
[5] Institute for Theoretical Chemistry,undefined
[6] Universität Stuttgart,undefined
[7] Technical University Dresden,undefined
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摘要
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated Kitaev topological spin liquid: the spin-orbit entangled states of Ir4+ in principle generate precisely the required type of anisotropic exchange. However, other magnetic couplings can drive the system away from the spin-liquid phase. With this in mind, here we disentangle the different magnetic interactions in Li2IrO3, a honeycomb iridate with two crystallographically inequivalent sets of adjacent Ir sites. Our ab initio many-body calculations show that, while both Heisenberg and Kitaev nearest-neighbour couplings are present, on one set of Ir–Ir bonds the former dominates, resulting in the formation of spin-triplet dimers. The triplet dimers frame a strongly frustrated triangular lattice and by exact cluster diagonalization we show that they remain protected in a wide region of the phase diagram.
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