Bosonic Mean Field Theory of the Spiral Phases of Heisenberg Antiferromagnets on a Chain
arXiv:cond-mat/9212013 · doi:10.1103/PhysRevB.48.12763
Abstract
We develop a novel bosonic mean field theory to describe the spiral phases of a Heisenberg antiferromagnet on a one-dimensional chain, in terms of three bosons at each site. The ground state is disordered and for large values of the spin , two different and exponentially small energy gaps are found. The spin-spin correlation function is computed and is shown to decay exponentially at large distances. Our mean field theory is also shown to be exact in a large- generalization.
plain.tex, TIFR/TH/92-66, IISc/CTS/92-12