Accurate computation of the Briot–Sellmeier and Briot–Cauchy chromatic dispersion coefficients from the transmittance spectrum of thin films of arbitrary absorptance
Author:
Publisher
The Optical Society
Subject
Computer Vision and Pattern Recognition,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
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1. New developments in the determination of the complex refractive index of arbitrary absorptance thin films from envelope profiles of a single transmittance curve;Optical Components and Materials XV;2018-02-22
2. Determination of Optical Properties of Thin Films from Ketteler-Helmholtz Dispersion Relations: Application to the Case of Ultraviolet Irradiated Zirconium Oxide;Advances in Materials Science and Engineering;2017
3. A self-consistent method for the determination of the complex refractive index of arbitrary absorptance thin films;Frontiers in Optics 2016;2016
4. A new, fast and accurate spectrophotometric method for the determination of the optical constants of arbitrary absorptance thin films from a single transmittance curve: application to dielectric materials;SPIE Proceedings;2015-08-20
5. Characterization of the DT Layer of ICF Targets by Optical Techniques;Fusion Science and Technology;2006-05
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