Magnetic properties of LiCuO -- quasi-two-dimensional antiferromagnet on depleted square lattice
arXiv:2409.04213 · doi:10.1103/PhysRevB.109.115151
Abstract
LiCuO is a novel 2D S=1/2 antiferromagnet with randomly depleted square lattice. The crystal structure contains two types of square planes with different Cu Li substitution rates (20% and 40%). Li NMR and magnetization measurements performed on single crystals of LiCuO revealed the occurrence of magnetic order at K and the change of the magnetic state at K. The high temperature transition can be attributed to establishment of magnetic order in planes with higher concentration of magnetic ions and the low temperature transition -- to the magnetic ordering in planes with lower concentration of magnetic ions. Broad continuous NMR spectra below reflect a continuous distribution of values or directions of magnetic moments in LiCuO typical for spiral, spin-modulated magnetic structures or structures with frozen disorder. Magnetization measurements revealed a spin-flop transition which indicates weak uniaxial anisotropy of the spin structure. Relatively small value of magnetic susceptibility at all orientations of applied magnetic field shows that magnetic structure is rigid, since the estimated value of saturation field derived from differential susceptibility measured at T is 200 T.
11 pages, 12 figures