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Spin-Liquid State for Two-Dimensional Heisenberg Antiferromagnets on a Triangular Lattice

arXiv:cond-mat/9808072 · doi:10.1142/S0217984998000792

Abstract

The spin liquid state of the antiferromagnetic Heisenberg model on a triangular lattice is studied within the self-consistent Green's function method. It is shown that the spin excitation spectra is gapless, and ground-state energy per site is $E_{g}/NJ=-0.966$, which is in very good agreement with the results obtained within the variational Monte Carlo method based on the resonating-valence-bond state. Some thermodynamic properties are also discussed.

4 pages, Revtex, Three figures are not included, and can be obtained by request (spfeng@sun.ihep.ac.cn)