State-of-the-art molecular quantum chemical techniques have been applied to the solid-state compound Li2CuO2 in order to derive accurate estimates of the in-chain magnetic interactions. In the present work, the magnitude of the nearest neighbour and next nearest neighbour magnetic coupling constants is investigated from first principles embedded cluster calculations. The convergence of the results is carefully tested for the cluster size. In contrast to the earlier findings, it is predicted that J2 is only ~15% of J1. In particular, it is shown that a large J2 appears when the Li+ ions are not explicitly included in the calculation
A "7Li NMR study of the antiferromagnetic cuprate compound Li_2CuO_2 is presented. The hyperfin...
We analyze the magnetic form factor of Cu2+ in low-dimensional quantum magnets by taking the metal-l...
Recently a new one-dimensional (1D) quantum spin chain system has been reported: catena-dichloro(2-C...
State-of-the-art molecular quantum chemical techniques have been applied to the solid-state compound...
The possible origin of the spiral spin structure in multiferroic LiCu2O2 is studied by calculating a...
The magnetic structure of the edge-sharing cuprate compound Li2CuO2 has been investigated with highl...
The possible origin of the spiral spin structure in multiferroic LiCu2O2 is studied by calculating a...
International audienceThe possible origin of the spiral spin structure in multiferroic LiCu2O2 is st...
We report on Li nuclear magnetic resonance measurements of the spin-chain compound LiCu2O2 in the pa...
We present an inelastic neutron scattering investigation of Li2CuO2 detecting the long-sought quasi-...
Magnetic interactions in ionic solids are studied using parameter-free methods designed to provide a...
A wide range of experimental, semiempirical, and theoretical values have been reported in the litera...
Magnetic edge-sharing chain compound Li2CuO2 is considered. Previously, noted contradiction between ...
Based on resonant soft X-ray magnetic scattering, we report that LiCu2O2 exhibits a large interchain...
The spin-1/2 Cu(2+) ions of LiCuVO(4) form one-dimensional chains along the b direction, and the spi...
A "7Li NMR study of the antiferromagnetic cuprate compound Li_2CuO_2 is presented. The hyperfin...
We analyze the magnetic form factor of Cu2+ in low-dimensional quantum magnets by taking the metal-l...
Recently a new one-dimensional (1D) quantum spin chain system has been reported: catena-dichloro(2-C...
State-of-the-art molecular quantum chemical techniques have been applied to the solid-state compound...
The possible origin of the spiral spin structure in multiferroic LiCu2O2 is studied by calculating a...
The magnetic structure of the edge-sharing cuprate compound Li2CuO2 has been investigated with highl...
The possible origin of the spiral spin structure in multiferroic LiCu2O2 is studied by calculating a...
International audienceThe possible origin of the spiral spin structure in multiferroic LiCu2O2 is st...
We report on Li nuclear magnetic resonance measurements of the spin-chain compound LiCu2O2 in the pa...
We present an inelastic neutron scattering investigation of Li2CuO2 detecting the long-sought quasi-...
Magnetic interactions in ionic solids are studied using parameter-free methods designed to provide a...
A wide range of experimental, semiempirical, and theoretical values have been reported in the litera...
Magnetic edge-sharing chain compound Li2CuO2 is considered. Previously, noted contradiction between ...
Based on resonant soft X-ray magnetic scattering, we report that LiCu2O2 exhibits a large interchain...
The spin-1/2 Cu(2+) ions of LiCuVO(4) form one-dimensional chains along the b direction, and the spi...
A "7Li NMR study of the antiferromagnetic cuprate compound Li_2CuO_2 is presented. The hyperfin...
We analyze the magnetic form factor of Cu2+ in low-dimensional quantum magnets by taking the metal-l...
Recently a new one-dimensional (1D) quantum spin chain system has been reported: catena-dichloro(2-C...