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  4. Division of Solid State Physics
  5. Department of Optical Materials
  6. Group of luminescent and scintillation materials
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Group of luminescent and scintillation materials

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Efficient Ultrafast Scintillation of KLuS2:Pr3+ Phosphor: A Candidate for Fast-Timing Applications

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Fig_May2023_3.jpg

Highly Resolved X-Ray Imaging Enabled by In(I) Doped Perovskite-Like Cs3Cu2I5 Single Crystal Scintillator

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Fig_May2023_2.jpg

Timing performance of lead halide perovskite nanoscintillators embedded in a polystyrene matrix

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Fig_May2023_1

Development and prospects of garnet ceramic scintillators: A review.

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Vysledky_Obr3_Anglicky.jpg

Scintillation Response Enhancement in Nanocrystalline Lead Halide Perovskite Thin Films on Scintillating Wafers

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Vysledky_Obr2_Anglicky.jpg

Ternary sulfides ALnS2:Eu2+ (A = Alkaline Metal, Ln = rare-earth element) for lighting: Correlation between the host structure and Eu2+ emission maxima.

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Vysledky_Obr1_Anglicky.jpg

Specific absorption in Y3Al5O12:Eu ceramics and the role of stable Eu2+ in the energy transfer processes

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Dept27_2021_Fig1.png

Trapping and Recombination Centers in Cesium Hafnium Chloride Single Crystals

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Dept27_VVFig1.png

Hole Self-Trapping in Y3Al5O12 and Lu3Al5O12 Garnet Crystals

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Autolokalizace děr v krystalech granátů Y3Al5O12 a Lu3Al5O12

Garnet Scintillators of Superior Timing Characteristics: Material, Engineering by Liquid Phase Epitaxy

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Granátové scintilátory s vynikajícími charakteristikami časování: materiály, inženýrství epitaxí v kapalné fázi

Luminescence and Charge Trapping in Cs2HfCl6 Single Crystals: Optical and Magnetic Resonance Spectroscopy Study

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Luminiscence a záchyt náboje v monokrystalech Cs<sub>2</sub>HfCl<sub>6</sub>: Optická studie a studie elektronové paramagnetické rezonance

YAG:Eu2+ phosphor

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YAG:Eu<sup>2+</sup> luminofor

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