English

Deconfined quantum criticality in SU(3) antiferromagnets on the triangular lattice

Strongly Correlated Electrons 2017-05-29 v2

Abstract

We propose field theories for a deconfined quantum critical point in SU(3)SU(3) antiferromagnets on the triangular lattice. In particular we consider the continuous transition between a magnetic, three- sublattice color-ordered phase and a trimerized SU(3)SU(3) singlet phase. Starting from the magnetically ordered state we derive a critical theory in terms of fractional bosonic degrees of freedom, in close analogy to the well-developed description of the SU(2)SU(2) Neel - valence bond solid (VBS) transition on the square lattice. Our critical theory consists of three coupled CP2CP^2 models and we study its fixed point structure using a functional renormalization group approach in a suitable large NN limit. We find a stable critical fixed point and estimate its critical exponents, thereby providing an example of deconfined criticality beyond the universality class of the CPNCP^N model. In addition we present a complementary route towards the critical field theory by studying topological defects of the trimerized SU(3)SU(3) singlet phase.

Keywords

Cite

@article{arxiv.1703.01308,
  title  = {Deconfined quantum criticality in SU(3) antiferromagnets on the triangular lattice},
  author = {Dimitri Pimenov and Matthias Punk},
  journal= {arXiv preprint arXiv:1703.01308},
  year   = {2017}
}

Comments

15 pages, 10 figures, updated references