Dynamic nonlinear optical processes in some oxygen-octahedra ferroelectrics: first principle calculations
Date
2015Source Title
Ferroelectrics
Print ISSN
0015-0193
Electronic ISSN
1563-5112
Publisher
Taylor & Francis Inc.
Volume
483
Issue
1
Pages
26 - 42
Language
English
Type
ArticleItem Usage Stats
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Abstract
The nonlinear optical properties and electro-optic effects of some oxygen-octahedra ferroelectrics are studied by the density functional theory (DFT) in the local density approximation (LDA) expressions based on first principle calculations without the scissor approximation. We present calculations of the frequency- dependent complex dielectric function and the second harmonic generation response coefficient over a large frequency range in tetragonal and rhombohedral phases. The electronic linear electro-optic susceptibility is also evaluated below the band gap. These results are based on a series of the LDA calculation using DFT. The results for are in agreement with the experiment below the band gap and those for are compared with the experimental data where available. © 2015 Taylor & Francis Group, LLC.
Keywords
ABO3Ferroelectrics
Nonlinear optic processes
Density functional theory
Energy gap
Ferroelectric materials
Harmonic generation
Local density approximation
Optical properties
Complex dielectric functions
Electrooptic effects
First principle calculations
Linear electro-optics
Non-linear optical properties
Response coefficient
Tetragonal and rhombohedral phasis
Nonlinear optics
Permalink
http://hdl.handle.net/11693/23314Published Version (Please cite this version)
http://dx.doi.org/10.1080/00150193.2015.1058668Collections
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