English

Quantum disordered ground state for hard-core bosons on the frustrated square lattice

Strongly Correlated Electrons 2015-03-18 v3 Statistical Mechanics

Abstract

We investigate the phase diagram of hard-core bosons on a square lattice with competing interactions. The hard-core bosons can be represented also by spin-1/2 operators and the model can therefore be mapped onto an anisotropic J1J_1-J2J_2-Heisenberg model. We find the N\'eel state and a collinear antiferromagnetic state as classical ordered phases to be suppressed for small ferromagnetic exchange terms J1,2x,yJ_{1,2}^{x,y} and a ferromagnetic phase which orders in the x-y-plane for large J1,2x,yJ_{1,2}^{x,y}. For an intermediate regime the emergence of new quantum states like valence bond crystals or super-solids is predicted for similar models. We do not observe any signal for long-range order in terms of conventional order or dimer correlations in our model and find an exponential decay in the spin correlations. Hence, all evidence is pointing towards a quantum disordered ground state for a small region in the phase diagram.

Keywords

Cite

@article{arxiv.1101.5115,
  title  = {Quantum disordered ground state for hard-core bosons on the frustrated square lattice},
  author = {A. Kalz and A. Honecker and S. Fuchs and T. Pruschke},
  journal= {arXiv preprint arXiv:1101.5115},
  year   = {2015}
}

Comments

8 pages, 9 figures; version 3 includes erratum Phys. Rev. B 84, 219902(E) (2011): correction of formulas in Sec. III and replacement of "DPT transition line" in Fig. 1, (no other changes)