Thermodynamic properties of LiCuO multiferroic compound
arXiv:1312.0293 · doi:10.1016/j.physleta.2014.03.025
Abstract
A spin model of quasi-one dimensional LiCuO compound with ground state of ellipsoidal helical structure in which the helical axis is along the diagonal of CuO squares has been adopted. By taking into account the interchain coupling and exchange anisotropy, the exotic magnetic properties and ferroelectricity induced by spiral spin order have been studied by performing Monte Carlo simulation. The simulation results qualitatively reproduce the main characters of ferroelectric and magnetic behaviors of LiCuO compound and confirm the low-temperature incollinear spiral ordering. Furthermore, by performing the calculations of spin structure factor, we systematically investigate the effects of different exchange coupling on the lower-temperature magnetic transition, and find that the spiral spin order depends not only on the ratio of nearest and next-nearest neighbor inchain spin coupling but also strongly on the exchange anisotropy.
13 pages, 11 figures
References in corpus (6)
- Spin current and magneto-electric effect in non-collinear magnets
- Spin-polarization coupling in multiferroic transition-metal oxides
- Correlation between spin helicity and electric polarization vector in quantum-spin chain magnet LiCuO
- Multiferroicity in the spin-1/2 quantum matter of LiCu2O2
- Magnetic phase diagram of the frustrated S=1/2 chain magnet LiCu_2O_2
- Li non-stoichiometry and crystal growth of untwinned 1D quantum spin system Lix Cu2 O2
Cited by in corpus (7)
- Magnetism-driven ferroelectricity in spin-1/2 chains
- Electric field driven flat bands: Enhanced magnetoelectric and electrocaloric effects in frustrated quantum magnets
- Spin-1/2 XY chain magnetoelectric: effect of zigzag geometry
- Anisotropic Exchange in
- Influence of anisotropy on a magnetoelectric effect in spin-1/2 chain in a transverse magnetic field
- Magnetic field control of ferroelectric polarization and magnetization of LiCu2O2 compound
- Determination of superexchange interactions for the CuO chains in LiCuO