Vibrational distribution functions are derived for a number of rocksalt-structure alkali halides using a more refined treatment of the interionic forces than that provided by regarding them as rigid point charges. The dipole moment at any given ion site is calculated taking into account the contribution from the deformation of the electron distribution resulting from both polarization and overlap repulsion between nearest neighbors. In this way the dipole-dipole part of the Coulomb interaction is treated self-consistently. Both room temperature and 0°K input parameters are used, and the derived specific-heat data are compared with experimental results. The over-all agreement with experiment is significantly better than that obtained by tre...
Results are presented from ab initio calculations on the symmetrical alkali halide dimers made up of...
The lattice energies and other properties of ionic crystals have been studied on the basis of a Lenn...
Frequency versus wave-vector dispersion relations along the three principal symmetry directions viz....
Vibrational distribution functions are derived for a number of rocksalt-structure alkali halides usi...
The method of lattice statics, in the zero-order approximation, is used to evaluate the Schottky-pai...
The method of lattice statics and the deformation dipole model have been applied to Frenkel defects ...
The method of lattice statics and the deformation dipole model have been applied to Frenkel defects ...
We used three sets of individual interaction potentials for alkali and halide ions. The first was th...
The gaseous alkali halide molecules are of interest because they constitute a group particularly sus...
An Embedded-Atom-Method model that is successful at describing the vibrational properties of alkali ...
A deformation-dipole model with first- and second-neighbor central short-range forces is used as a b...
A deformation-dipole model with first- and second-neighbor central short-range forces is used as a b...
Embedded-atom-method models have been used in the calculation and prediction of many vibrational and...
The method of lattice statics and the deformation-dipole model have been applied to Schottky defects...
A deformation-dipole model with first- and second-neighbor central short-range forces is used as a b...
Results are presented from ab initio calculations on the symmetrical alkali halide dimers made up of...
The lattice energies and other properties of ionic crystals have been studied on the basis of a Lenn...
Frequency versus wave-vector dispersion relations along the three principal symmetry directions viz....
Vibrational distribution functions are derived for a number of rocksalt-structure alkali halides usi...
The method of lattice statics, in the zero-order approximation, is used to evaluate the Schottky-pai...
The method of lattice statics and the deformation dipole model have been applied to Frenkel defects ...
The method of lattice statics and the deformation dipole model have been applied to Frenkel defects ...
We used three sets of individual interaction potentials for alkali and halide ions. The first was th...
The gaseous alkali halide molecules are of interest because they constitute a group particularly sus...
An Embedded-Atom-Method model that is successful at describing the vibrational properties of alkali ...
A deformation-dipole model with first- and second-neighbor central short-range forces is used as a b...
A deformation-dipole model with first- and second-neighbor central short-range forces is used as a b...
Embedded-atom-method models have been used in the calculation and prediction of many vibrational and...
The method of lattice statics and the deformation-dipole model have been applied to Schottky defects...
A deformation-dipole model with first- and second-neighbor central short-range forces is used as a b...
Results are presented from ab initio calculations on the symmetrical alkali halide dimers made up of...
The lattice energies and other properties of ionic crystals have been studied on the basis of a Lenn...
Frequency versus wave-vector dispersion relations along the three principal symmetry directions viz....