Dielectric properties and lattice dynamics of Ca-doped KLiTaO
arXiv:cond-mat/0608074 · doi:10.1103/PhysRevB.74.054101
Abstract
Relaxor behavior and lattice dynamics have been studied for a single crystal of KLiTaO , where a small amount of a Ca impurity (~ppm) was incorporated. The dielectric measurements revealed Debye-like relaxations with Arrhenius activation energies of 80 and 240 meV that are assigned to Li dipoles and the Li-Li dipolar pairs, respectively. In the neutron scattering results, diffuse scattering ridges appear around the nuclear Bragg peaks below K and phonon line broadening features start to appear at even higher temperatures suggesting that polar nano-regions (PNR's) start to form at these temperatures. These results are supported by the dielectric data that reveal relaxor behavior starting at K on cooling. From analyses of the diffuse intensities, the displacements include a uniform phase shift of all of the atoms in addition to the atomic displacements corresponding to a polarization vector of the transverse optic soft ferroelectric mode, a finding that is analogous to that in the prototypical relaxor material Pb(MgNb)O.
13 pages, 12 figures
References in corpus (1)
Cited by in corpus (3)
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- Response of polar nanoregions in 68%Pb(Mg1/3Nb2/3)O3-32%PbTiO3 to a [001] electric field
- The effect of local dipole moments on the structure and lattice dynamics of K0.98Li0.02TaO3