paper

Classical spin-liquid on the maximally frustrated honeycomb lattice

arXiv:1510.01448 · doi:10.1103/PhysRevLett.117.167201

Abstract

We show that the honeycomb Heisenberg antiferromagnet with , where are first-, second- and third-neighbour couplings respectively, forms a classical spin liquid with pinch-point singularities in the structure factor at the Brillouin zone corners. Upon dilution with non-magnetic ions, fractionalised degrees of freedom carrying of the free moment emerge. Their effective description in the limit of low-temperature is that of spins randomly located on a triangular lattice, with a frustrated interaction of long-ranged logarithmic form. The XY version of this magnet exhibits nematic thermal order by disorder, which comes with a clear experimental diagnostic.

5 pages, 4 figures

Classical spin-liquid on the maximally frustrated honeycomb lattice · wovepaper