English

Frustrated Quantum Antiferromagnets: Application of High-Order Coupled Cluster Method

Strongly Correlated Electrons 2009-11-11 v1

Abstract

We report on recent results for strongly frustrated quantum J1J_1-J2J_2 antiferromagnets in dimensionality d=1,2,3 obtained by the coupled cluster method (CCM). We demonstrate that the CCM in high orders of approximation allows us to investigate quantum phase transitions driven by frustration and to discuss novel quantum ground states. In detail we consider the ground-state properties of (i) the Heisenberg spin-1/2 antiferromagnet on the cubic lattice in d=1,2,3, and use the results for the energy, the sublattice magnetization and the spin stiffness as a benchmark test for the precision of the method; (ii) coupled frustrated spin chains (the quasi-one-dimensional J1J_1--J2J_2 model) and discuss the influence of the quantum fluctuations and the interchain coupling on the incommensurate spiral state present in the classical model; (iii) the Shastry-Sutherland antiferromagnet on the square lattice; and (iv) a stacked frustrated square-lattice Heisenberg antiferromagnet (the quasi-two-dimensional J1J_1--J2J_2 model), and discuss the influence of the interlayer coupling on the quantum paramagnetic ground-state phase that is present for the strictly two-dimensional model.

Keywords

Cite

@article{arxiv.cond-mat/0612146,
  title  = {Frustrated Quantum Antiferromagnets: Application of High-Order Coupled Cluster Method},
  author = {J. Richter and R. Darradi and R. Zinke and R. F. Bishop},
  journal= {arXiv preprint arXiv:cond-mat/0612146},
  year   = {2009}
}

Comments

16 pages, 7 figures, to appear in Proc. of "The 30th International Workshop on Condensed Matter theories" June 2006

R2 v1 2026-07-22T11:40:39.198Z