Browse > Article
http://dx.doi.org/10.5762/KAIS.2017.18.1.592

Estimation of Optical Properties under High Temperature Conditions  

Jin, Doo-Han (Department of Mechatronics Engineering, Korea University of Technology and Education)
Jeong, Kyung-Seok (Department of Mechanical Engineering, Korea University of Technology and Education)
Publication Information
Journal of the Korea Academia-Industrial cooperation Society / v.18, no.1, 2017 , pp. 592-598 More about this Journal
Abstract
A method for estimating the optical characteristics of ceramic materials under high temperature conditions has been applied and evaluated. For that purpose, an interface system combined with a photo-spectrometer was made to keep the samples at the required high temperature. The transmittance of the samples was measured at various temperatures. The measured transmittance data was used to estimate the refractive index using an optical simulation model in conjunction with the Sellmeier equation. The Sellmeier equation parameters were selected by trial-and-error when the transmittance recalculated using the estimated refractive index was compared with the measured transmittance. Furthermore, the estimated refractive indices were checked by a comparison with the reference data at some typical wavelengths at room temperature.
Keywords
Ceramic materials; refractiveindex; Sellmeier equation; trial-and-error; transmittance;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Optical and physical properties of materials book, pp. 14-18. Available from : http://www.slideshare.net/Palaniswamy Sankariah/optical physical properties of materials book, 2016. 11.
2 Refractive Index of Sapphire (Al2O3). Available From: http://www.crystran.co.uk/ptical-materials/sapphire-al2o3 2016. 11.
3 A. S. Barker, "Infrared Lattice Vibrations and Dielectric Dispersion in Corundum," Phys. Rev. 132:1474-1481, 1963. DOI: https://doi.org/10.1103/PhysRev.132.1474   DOI
4 F. Gervais, B. Piriou, "Anharmonicity in Several-polar-mode Crystals: Adjusting Phonon Self-energy of LO and TO Modes in Al2O3 and TiO2 to Fit Infrared Reflectivity," J. Phys. C7:2374-2386, 1974. DOI: https://doi.org/10.1088/0022-3719/7/13/017
5 I. M. Malitson, M. J. Dodge, "Refractive Index and Birefringence of Synthetic Sapphire", J. Opt. Soc. Am, 1405, 1972.
6 C. H. Lange, D. D. Duncan, "Temperature Coefficient of Refractive Index for Candidate Optical Windows", SPIE Proc. 1326, pp. 71-78, 1990. DOI: https://doi.org/10.1117/12.22483
7 M. E. Thomas, R. I. Joseph, W. J. Tropf, "Infrared Transmission Properties of Sapphire, Spinel, Yttria, and ALON as a Function of Frequency and Temperature", Appl. Opt. vol. 27, pp. 239-245, 1988. DOI: https://doi.org/10.1364/AO.27.000239   DOI