Pressure-dependent Raman modes near the cubic-tetragonal transition in strontium titanate
No Thumbnail Available
Date
2018
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Wiley
Open Access Color
OpenAIRE Downloads
OpenAIRE Views
Abstract
The pressure dependence of the Raman frequency shifts of various Raman modes is calculated at room temperature using the volume data from the literature for the cubic-tetragonal transition in SrTiO3. The isothermal mode Gruneisen parameters of those Raman modes are obtained, which decrease with increasing pressure for this molecular crystal. Calculated Raman frequencies are then used to predict the damping constant and the inverse relaxation time of those Raman modes as a function of pressure by means of the pseudospin-phonon (PS) coupled model and the energy fluctuation (EF) model to describe the cubic-tetragonal transition in SrTiO3. Also, the values of the activation energy are extracted for the Raman modes studied using both models (PS and EF). Our predicted damping constant and the inverse relaxation time for the Raman modes, can be compared with the experimental measurements close to the cubic-tetragonal transition in SrTiO3.
Description
Keywords
Dielectric Relaxation, Phase Transformations, Raman Spectroscopy, Strontium Titanate
Turkish CoHE Thesis Center URL
Fields of Science
Citation
Kiracı, A., Yurtseven, H. (2018). Pressure-dependent Raman modes near the cubic-tetragonal transition in strontium titanate. Journal Of The american Ceramic Society, 101(3), 1344-1355. http://dx.doi.org/ 10.1111/jace.15279
WoS Q
Scopus Q
Source
Journal Of The american Ceramic Society
Volume
101
Issue
3
Start Page
1344
End Page
1355