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Tuning into the Kitaev spin liquid phase:A spin model on the honeycomb lattice with two types of Heisenberg exchange couplings

Published 8 Feb 2012 in cond-mat.str-el | (1202.1610v5)

Abstract: We study a spin model on honeycomb lattice with two types of Heisenberg exchange couplings, JJ and J~\tilde J, where JJ is for the conventional spin and and J~\tilde J for rotated spin. When J~=0\tilde J=0, this is the conventional Heisenberg model. When J=0, the system is either in a stripy antiferromagnetic order($\tilde J<0$, ferromagnetic for rotated spin) or a zig-zag antiferromagnetic order ($\tilde J>0$, antiferromagnetic for rotated spin). The competition between two ferromagnetic orders or two antiferromagnetic orders induces Kitaev's spin liquid phase characterized by the exactly solvable Kitaev model (J=J~J=\tilde J). Our model can be applied to layered Mott insulators A2_2IrO3_3 (A=Li, Na). For a monolayer of Li2_2IrO3_3, we show that it is possible to tune the controlling parameter into the Kitaev spin liquid regime by a link-dependent Rashba spin-orbital coupling.

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