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Transparent Alumina: A Light‐Scattering Model

Journal of the American Ceramic Society · 2003 · Vol. 86(3) · pp. 480–486
R. ApetzM. P. B. van Bruggen

Abstract

A model based on Rayleigh–Gans–Debye light‐scattering theory has been developed to describe the light transmission properties of fine‐grained, fully dense, polycrystalline ceramics consisting of birefringent crystals. This model extends light transmission models based on geometrical optics, which are valid only for coarse‐grained microstructures, to smaller crystal sizes. We verify our model by measuring the light transmission properties of fully dense (>99.99%), polycrystalline α‐Al 2 O 3 (PCA) with mean crystal sizes ranging from 60 to 0.3 μm. The remarkable transparency exhibited by PCA samples with small crystal sizes (<2 μm) is well explained by this model.

Advanced ceramic materials synthesisGlass properties and applicationsFerroelectric and Piezoelectric MaterialsCrystalliteMaterials scienceLight scatteringRayleigh scatteringOpticsCrystal (programming language)BirefringenceScatteringMicrostructureDebye model
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