We have analyzed the phonon dispersion curves in the paraelectric phase of a lead hafnate crystal (PbHfO3) by means of two different lattice-dynamical models. Both the rigid-ion model and the shell one provided an acceptable description of the available experimental data. The atomic displacement patterns were qualitatively different for the two models. In the rigid-ion model the motion in the characteristic low-energy flattened transverse acoustic branch contained both lead and hafnium displacements, while for the shell model it corresponded mainly to lead displacements with the small contribution of oxygen displacements. The shell model allows simultaneous description of the phonon dispersion curves and the correct value of the dielectric ...
The phonon dispersion relations calculated by atomic model: shell model and ab initio, and by microc...
The phonon dispersion curves of cubic acetylene, tetragonal urea, and monoclinic sodium carbonate ar...
550-555An extended two sublattice pseudospin lattice coupled mode model by adding third and fourth...
AbstractWe have analyzed the phonon dispersion curves in the paraelectric phase of a lead hafnate cr...
AbstractWe have analyzed the phonon dispersion curves in the paraelectric phase of a lead hafnate cr...
The calculations of low-energy phonon dispersion relations in lead zirconate (PZ) have been carried ...
The vibrational spectrum and lattice heat capacities of lead are calculated on the basis of the exte...
The calculations of low-energy phonon dispersion relations in lead zirconate (PZ) have been carried ...
Lattice dynamical formalism using rigid ion model with long range coulomb forces and short range axi...
79-82A lattice dynamical model which includes the effect of three-body interactions (TBI) in the fra...
A simple lattice dynamical model for metals is proposed. A body-centered cubic lattice of ion cores ...
Frequency/wave vector v(q) dispersion curves for lead at 100°K have been measured by neutron sp...
The model for the lattice dynamics of metals, recently proposed by the authors is improved by incorp...
A simple model for the calculation of the phonon dispersion curves of the noble and transition metal...
A lattice dynamical model based on a potential function is used to obtain the phonon dispersion rela...
The phonon dispersion relations calculated by atomic model: shell model and ab initio, and by microc...
The phonon dispersion curves of cubic acetylene, tetragonal urea, and monoclinic sodium carbonate ar...
550-555An extended two sublattice pseudospin lattice coupled mode model by adding third and fourth...
AbstractWe have analyzed the phonon dispersion curves in the paraelectric phase of a lead hafnate cr...
AbstractWe have analyzed the phonon dispersion curves in the paraelectric phase of a lead hafnate cr...
The calculations of low-energy phonon dispersion relations in lead zirconate (PZ) have been carried ...
The vibrational spectrum and lattice heat capacities of lead are calculated on the basis of the exte...
The calculations of low-energy phonon dispersion relations in lead zirconate (PZ) have been carried ...
Lattice dynamical formalism using rigid ion model with long range coulomb forces and short range axi...
79-82A lattice dynamical model which includes the effect of three-body interactions (TBI) in the fra...
A simple lattice dynamical model for metals is proposed. A body-centered cubic lattice of ion cores ...
Frequency/wave vector v(q) dispersion curves for lead at 100°K have been measured by neutron sp...
The model for the lattice dynamics of metals, recently proposed by the authors is improved by incorp...
A simple model for the calculation of the phonon dispersion curves of the noble and transition metal...
A lattice dynamical model based on a potential function is used to obtain the phonon dispersion rela...
The phonon dispersion relations calculated by atomic model: shell model and ab initio, and by microc...
The phonon dispersion curves of cubic acetylene, tetragonal urea, and monoclinic sodium carbonate ar...
550-555An extended two sublattice pseudospin lattice coupled mode model by adding third and fourth...