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Temperature-dependent diffuse reflectance spectroscopy of plasma-sprayed Cr-doped α-alumina using supercontinuum laser illumination and CO laser heating. | LitMetric

AI Article Synopsis

  • The study investigates how the optical properties of polycrystalline Cr-doped α-alumina change at high temperatures (up to 1550 K), focusing on the diffuse reflectance spectra from 510-840 nm.
  • It highlights a previously unobserved effect where the U-band absorption experiences a thermally activated splitting due to the presence of octahedrally coordinated chromium.
  • A novel laser-based method was developed for measuring these properties under high-temperature conditions, and the findings were correlated with existing optical spectra from ruby to validate the measurement techniques used in this research.

Article Abstract

This study presents results for the high-temperature (up to 1550 K) optical properties of polycrystalline Cr-doped α-alumina materials. Diffuse reflectance spectra in the wavelength range of 510-840 nm are presented as a function of temperature to illustrate changes to the optical behavior of these materials including a previously unreported thermally activated splitting of the U-band absorption (A4→T4) in octahedrally coordinated Cr. Measurements were made using a unique laser-based approach for high-temperature solid-state spectroscopy, involving front-side supercontinuum laser illumination and back-side CO laser heating. This approach required development of samples that could withstand related thermal stresses, and measurements were made on plasma-sprayed, Cr-doped α-alumina monoliths. Measured spectra are interpreted, in part, using published optical spectra for ruby; agreement between results here with those obtained using more traditional methods serves to validate the measurement methods used for this work.

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Source
http://dx.doi.org/10.1364/AO.56.007618DOI Listing

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