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Titlebook: Engineering of Scintillation Materials and Radiation Technologies; Selected Articles o Mikhail Korzhik,Alexander Gektin Conference proceed

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Scintillation Materials with Disordered Garnet Structure for Novel Scintillation DetectorsThe effect of the co-precipitated materials on the microstructural homogenity and elements redistribution in GGAG:Ce single crystals were investigated. The samples homogenity was confirmed with EDS analysis including both mapping and linear scanning. Both methods demonstrate the lack of elements segregation in samples.
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Towards New Production Technologies: 3D Printing of ScintillatorsThis critical review aims to note advances in 3D printing for the scintillation community. A few main 3D printing techniques were reviewed and compared. Technical limitations and practical challenges are emphasized, and design considerations are also discussed.
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https://doi.org/10.1007/978-3-642-59246-1uires fast scintillators with response of 10 ps. During last few years the physics of fast processes in scintillators attracts attention of the community. These processes include fast emission which occur in parallel with relaxation of electronic excitations (intraband luminescence, crossluminescenc
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Derek Offord (Reader in Russian)under preparation, among them the AMORE (Advanced Mo-based Rare Process Experiment) experiment, the purpose of which is to search for the 0ν2β decay of the .Mo isotope using scintillation isotope-enriched calcium molybdate .Ca.MoO. crystals as a source, and the detector as well. In the material of t
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https://doi.org/10.1007/978-1-349-00635-9thods, as one of the main component influenced on the cost of scintillator. On the examples of obtaining classic and new scintillators, the current trends in the development of classical and new technologies, allowing to grow both large and small crystals, are considered.
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