Solitary magnons in the antiferromagnet CaFeO
arXiv:1606.04243 · doi:10.1103/PhysRevLett.117.017201
Abstract
CaFeO is a anisotropic antiferromagnet based upon zig-zag chains having two competing magnetic structures, denoted as the A () and B () phases, which differ by the -axis stacking of ferromagnetic stripes. We apply neutron scattering to demonstrate that the competing A and B phase order parameters results in magnetic antiphase boundaries along which freeze on the timescale of 1 ns at the onset of magnetic order at 200 K. Using high resolution neutron spectroscopy, we find quantized spin wave levels and measure 9 such excitations localized in regions 1-2 -axis lattice constants in size. We discuss these in the context of solitary magnons predicted to exist in anisotropic systems. The magnetic anisotropy affords both competing A+B orders as well as localization of spin excitations in a classical magnet.
(main text - 5 pages, 4 figures; supplementary information - 2 pages, 1 figure, to be published in Physical Review Letters)