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Phenomenological model of changes in the speed of a sound wave in crystals caused by dopants

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Abstract

The paper examines theoretically changes in the speed of an acoustic wave in crystals caused by metallic dopants. It is well known that an acoustic wave has a wavelength larger than the typical dimension of the elementary crystallographic cell, so it is sensitive only to large-scale features. The model bases on the assumption that a crystal with uniform distributed dopants can be transformed into a multiplayer virtual structure form which some conclusions can be drawn. The approach presented is valid for longitudinal acoustic waves, where the atomic displacement can be considered as a continuum field. It provides positive or negative changes in the acoustic wave speeds for different dopants in a hypothetical lithium niobate crystal.

Original languageEnglish
Pages (from-to)447-459
Number of pages13
JournalArchives of Acoustics
Volume29
Issue number3
Publication statusPublished - 2004

Keywords

  • Dopants in lithium niobate
  • Elastic constants
  • Elastic waves in layered media
  • Lithium niobate
  • Pulse-echo method
  • Rytov's model
  • Superlattices
  • Ultrasonics

ASJC Scopus subject areas

  • Acoustics and Ultrasonics

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