Title of article :
Evaluation of Thermodynamic Properties of Solids by Quasiharmonic Lattice Dynamics
Author/Authors :
N. L. Allan، نويسنده , , G. D. Barrera، نويسنده , , T. H. K. Barron and M. B. Taylor ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Abstract :
Quasiharmonic lattice dynamics is a simulation technique complementary to
MoInte Carlo and molecular dynamics. Quantum effects are readily taken into
account, and high precision does not normally require long runs. Vibrational
stability is a sensitive test of iInteratomic potentials, and details of the vibrational
motion reveal mechanisms for phase transitions or for thermal expansion. The
major computational task is usually to find the equilibrium geometry at a given
T, P; this done, calculating free energy, heat capacity, thermal expansion, etc.,
is rapid and accurate. For three-dimensional ionic crystals and slabs, our code
SHELL calculates analytically first derivatives of the free energy with respect
to all strains, iInternal as well as external; this gives a full minimization of the
free energy so efficient that large unit cells can be used, allowing applications
to defects and disordered systems. Various applications are discussed: MgF2 ,
including the rutile fluorite transition; negative thermal expansion in ZrW2O8 ;
anisotropic expansion of polyethylene at very low temperatures; surface free
energies for MgO; defect energies and volumes in MgO; and a new method for
obtaining free energies and phase diagrams of disordered solids and solid solu-
tions, applied to MnO MgO and CaO MgO.
Keywords :
Defects , Lattice dynamics , free energy minimisation , low tem-peratures , solid solutions , Thermal expansion.
Journal title :
International Journal of Thermophysics
Journal title :
International Journal of Thermophysics