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  • The chapter reviews the latest studies in the field of fast scintillation optical ceramics in the last decade focusing on the interconnection among the manufacturing technology, scintillation performance and defect ocurrence and nature in the discussed material systems. The most studied group of materials are the cubic structure aluminum or multicomponent garnets, but interesting results have been achieved also in sesquioxide, silicate, hafnate, complex perovskite or rare earth halide compounds. Both basic physics and application aspects are considered in the description of the above mentioned systems.
  • The chapter reviews the latest studies in the field of fast scintillation optical ceramics in the last decade focusing on the interconnection among the manufacturing technology, scintillation performance and defect ocurrence and nature in the discussed material systems. The most studied group of materials are the cubic structure aluminum or multicomponent garnets, but interesting results have been achieved also in sesquioxide, silicate, hafnate, complex perovskite or rare earth halide compounds. Both basic physics and application aspects are considered in the description of the above mentioned systems. (en)
Title
  • Optical ceramics for fast scintillator materials
  • Optical ceramics for fast scintillator materials (en)
skos:prefLabel
  • Optical ceramics for fast scintillator materials
  • Optical ceramics for fast scintillator materials (en)
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  • RIV/68378271:_____/13:00396096!RIV14-MSM-68378271
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  • 94219
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  • RIV/68378271:_____/13:00396096
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  • scintillators; ceramics; oxides; halides; nanocomposites (en)
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  • [BFAC8F28A1A8]
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  • New York
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  • Recent advances in Ceramic Materials Research
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  • Mihóková, Eva
  • Nikl, Martin
  • Yanagida, T.
  • Yoshikawa, A.
  • Yanagitani, T.
  • Yagi, H.
number of pages
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  • Nova Science Publishers
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  • 9781624177293
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