Antiferromagnetic Heisenberg ladders in a staggered magnetic field
arXiv:cond-mat/0511469 · doi:10.1103/PhysRevB.73.012411
Abstract
We study the low-energy excitations of the spin-1/2 antiferromagnetic Heisenberg chain and -leg (=2, 3, 4) ladders in a staggered magnetic field . We show that induces gap and midgap states in all the cases and examine their field scaling behavior. A modified boundary scheme is devised to extract accurate bulk excitation behavior. The gap values converge rapidly as increases, leading to a field scaling exponent for both the longitudinal and transverse gaps of the square lattice (). The midgap states induced by the boundary edge effects share the bulk gap scaling exponents but their overall scaling behavior in the large-N limit needs further investigation.
4 pages, 4 figures, to appear in Phys. Rev. B