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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

Modulation of defect modes intensity by controlled light scattering in photonic crystal with liquid crystal domain structure the action of ac electric field. The domains cause a polarization-sensitive light scattering which leads

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

Simulation of the Static Electric Field Effect on the Director Orientation of Nematic Liquid Crystal in the Transition StateThe effect of static electric field on a nematic cell with side electrodes in the transition state

Simulation of the Static Electric Field Effect on the Director Orientation of Nematic Liquid Crystal in the Transition StateThe effect of static electric field on a nematic cell with side electrodes in the transition state

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

Inhomogeneous broadening of ESR lines of rare earth impurities in scheelite CaWO 4 induced by internal electric field gradients theoretically and experimentally in the special case when external magnetic field is parallel to crystal c axis

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

Optimum Conditions for Correlation of the Temporal Shape of an Object Pulse with a Stimulated Photon Echo Response in Inhomogeneous External Electric Fields spatially inhomogeneous electric fields. We have shown that, for the transition 3H 4-3P0 in a LaF3:Pr3

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