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- W2092808563 endingPage "401" @default.
- W2092808563 startingPage "259" @default.
- W2092808563 abstract "Abstract Recent developments in phonon models and microscopic theories of lattice mechanics have been reviewed, with particular emphasis on binary ionic solids. In doing so, we have traced the evolution of many body interactions from the electron-shell deformation and charge-transfer mechanisms and the approach of their incorporation in the framework of a dipolar model to describe the lattice static, dynamic, and anharmonic behaviours of these solids. The essential background and formalism of the sophisticated lattice dynamical models thus developed have been thoroughly treated in order to make them understandable and establish interrelationships between phonon and microscopic models and among themselves. An assessment of the relative merit of these models (e.g. breathing shell model, deformable shell model and three-body-force shell model) has been performed by making a critical comparison of theoretical results obtained from their comparative and unified lattice mechanical investigations with those measured from the experimental techniques and extensively surveyed in this article. Finally, we have outlined the future prospects and the scope of extension of various phonon models in view of the current trends in lattice dynamics and needs for a comprehensive study of the defect and anharmonic properties exhibited by the crystalline solids." @default.
- W2092808563 created "2016-06-24" @default.
- W2092808563 creator A5083184871 @default.
- W2092808563 date "1982-05-01" @default.
- W2092808563 modified "2023-09-26" @default.
- W2092808563 title "Many body interactions in binary ionic solids" @default.
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