English

N\'eel to valence-bond solid transition on the honeycomb lattice: Evidence for deconfined criticality

Strongly Correlated Electrons 2015-06-12 v2

Abstract

We study a spin-1/2 SU(2) model on the honeycomb lattice with nearest-neighbor antiferromagnetic exchange JJ that favors N\'eel order, and competing 6-spin interactions QQ which favor a valence bond solid (VBS) state in which the bond-energies order at the "columnar" wavevector K=(2π/3,2π/3){\mathbf K} = (2\pi/3,-2\pi/3). We present quantum Monte-Carlo evidence for a direct continuous quantum phase transition between N\'eel and VBS states, with exponents and logarithmic violations of scaling consistent with those at analogous deconfined critical points on the square lattice. Although this strongly suggests a description in terms of deconfined criticality, the measured three-fold anisotropy of the phase of the VBS order parameter shows unusual near-marginal behaviour at the critical point.

Keywords

Cite

@article{arxiv.1302.1408,
  title  = {N\'eel to valence-bond solid transition on the honeycomb lattice: Evidence for deconfined criticality},
  author = {Sumiran Pujari and Kedar Damle and Fabien Alet},
  journal= {arXiv preprint arXiv:1302.1408},
  year   = {2015}
}

Comments

published version with extensive T > 0 data; author list rearranged to reflect these new results