Simulations of equilibrium magnetic and magnetoelastic properties of non-conducting rare-earth compounds-electrons with the static
crystal field in the perfect
crystal lattice as well as in the homogeneously deformed lattice
Broadening of paramagnetic resonance lines by charged point defects in neodymium-doped scheelites contributions are singled out: arising from the local
electric fields,
electric field gradients and magnetic
Experimental and numerical study of properties of nematic liquid crystal waveguide structures and the presence of pulse-periodic
electric field were experimentally observed. An estimate is made
On the Theory of the Electric Polarization in FeCr 2 O 4 Ferrimagnet ferrimagnet is suggested. The polarization is induced by the odd
crystal field acting on 3d electrons of Fe 2
Crystal field of Yb3+ tetragonal centers in the YbRh 2Si2 intermetallic compound of the
crystal electric field of Yb3+ tetragonal centers and the parameter of the Hamiltonian for the spin