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Correlation of structural and optical properties using virtual materials analysis

 
: Badorreck, H.; Steinecke, M.; Jensen, L.; Ristau, D.; Jupé, M.; Müller, J.; Tonneau, R.; Moskovkin, P.; Lucas, P.; Pflug, A.; Grinevičiūtė, L.; Selskis, A.; Tolenis, T.

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Fulltext ()

Optics Express 27 (2019), No.16, pp.22209-22225
ISSN: 1094-4087
English
Journal Article, Electronic Publication
Fraunhofer IST ()

Abstract
Thin film growth of TiO₂ by physical vapor deposition processes is simulated in the Virtual Coater framework resulting in virtual thin films. The simulations are carried out for artificial, simplified deposition conditions as well as for conditions representing a real coating process. The study focuses on porous films which exhibit a significant anisotropy regarding the atomistic structure and consequently, to the index of refraction. A method how to determine the effective anisotropic index of refraction of virtual thin films by the effective medium theory is developed. The simulation applies both, classical molecular dynamics as well as kinetic Monte Carlo calculations, and finally the properties of the virtual films are compared to experimentally grown films especially analyzing the birefringence in the evaluation.

: http://publica.fraunhofer.de/documents/N-555486.html