Color centers in YAG

Yttrium aluminum garnet (Y<sub>3</sub>Al<sub>5</sub>O<sub>12</sub>, YAG) is one of the most important optical materials with many existing and potential future applications in laser, illumination, and scintillation. X-rays, g-rays, and UV light can induce ionizati...

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Main Authors: Chris R. Varney, Farida A. Selim
Format: Article
Language:English
Published: AIMS Press 2015-12-01
Series:AIMS Materials Science
Subjects:
YAG
Online Access:http://www.aimspress.com/Materials/article/561/fulltext.html
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spelling doaj-b010452d6c614c31adcd052ab354acac2020-11-25T02:45:07ZengAIMS PressAIMS Materials Science2372-04842015-12-012456057210.3934/matersci.2015.4.560matersci-02-00560Color centers in YAGChris R. Varney0Farida A. SelimDepartment of Physics, Seattle University, Seattle, WA 98122, USAYttrium aluminum garnet (Y<sub>3</sub>Al<sub>5</sub>O<sub>12</sub>, YAG) is one of the most important optical materials with many existing and potential future applications in laser, illumination, and scintillation. X-rays, g-rays, and UV light can induce ionization and significant changes in the valency of impurities and defects in YAG single crystals which may lead to the formation of color centers. In fact, the use of YAG crystals in laser and scintillation devices involves significant formation of color centers and requires full understanding for their characteristics and effects on the material properties. In this work, the formation and characteristics of color centers in undoped and rare-earth doped YAG single crystals was investigated mainly through optical absorption spectroscopy. An increase in the absorption over a broad range of wavelengths was observed in the as-grown sample after UV irradiation. F-centers and iron impurities in the as-grown undoped crystals were found to be responsible for the formation of color centers. However, air- or oxygen-anneal seems to be effective in suppressing most color centers in the crystals.http://www.aimspress.com/Materials/article/561/fulltext.htmlcolor centersYAGLaserF-centers
collection DOAJ
language English
format Article
sources DOAJ
author Chris R. Varney
Farida A. Selim
spellingShingle Chris R. Varney
Farida A. Selim
Color centers in YAG
AIMS Materials Science
color centers
YAG
Laser
F-centers
author_facet Chris R. Varney
Farida A. Selim
author_sort Chris R. Varney
title Color centers in YAG
title_short Color centers in YAG
title_full Color centers in YAG
title_fullStr Color centers in YAG
title_full_unstemmed Color centers in YAG
title_sort color centers in yag
publisher AIMS Press
series AIMS Materials Science
issn 2372-0484
publishDate 2015-12-01
description Yttrium aluminum garnet (Y<sub>3</sub>Al<sub>5</sub>O<sub>12</sub>, YAG) is one of the most important optical materials with many existing and potential future applications in laser, illumination, and scintillation. X-rays, g-rays, and UV light can induce ionization and significant changes in the valency of impurities and defects in YAG single crystals which may lead to the formation of color centers. In fact, the use of YAG crystals in laser and scintillation devices involves significant formation of color centers and requires full understanding for their characteristics and effects on the material properties. In this work, the formation and characteristics of color centers in undoped and rare-earth doped YAG single crystals was investigated mainly through optical absorption spectroscopy. An increase in the absorption over a broad range of wavelengths was observed in the as-grown sample after UV irradiation. F-centers and iron impurities in the as-grown undoped crystals were found to be responsible for the formation of color centers. However, air- or oxygen-anneal seems to be effective in suppressing most color centers in the crystals.
topic color centers
YAG
Laser
F-centers
url http://www.aimspress.com/Materials/article/561/fulltext.html
work_keys_str_mv AT chrisrvarney colorcentersinyag
AT faridaaselim colorcentersinyag
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