Theoretical Study of the Frustrated Ising Antiferromagnet on the Honeycomb Lattice

Abstract

We study effects of the next-next-nearest-neighbour antiferromagnetic (J3 < 0) interaction on critical properties (or phase diagram) of the frustrated spin-12 J1-J2-J3 Ising antiferromagnet on the honeycomb lattice by using the effective-field theory with correlations. Beside the ground-state energy, we find that there is a region of J3 < 0 in which the frustrated honeycomb lattice antiferromagnet exhibits a tricritical point, at which the phase transition changes from the second order to the first one on the line between N\'eel antiferromagnetic and paramagnetic phases.

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