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CERN Document Server 找到 5 筆記錄  檢索需時 0.54 秒. 
1.
Ultrafast and Radiation-Hard Lead Halide Perovskite Nanocomposite Scintillators / Erroi, Andrea (Milan Bicocca U.) ; Mecca, Sara (Milan Bicocca U.) ; Zaffalon, Matteo L (Milan Bicocca U.) ; Frank, Isabel (CERN ; Munich U.) ; Carulli, Francesco (Milan Bicocca U.) ; Cemmi, Alessia (ENEA, Rome) ; Di Sarcina, Ilaria (ENEA, Rome) ; Debellis, Doriana (Italian Inst. Tech., Genoa) ; Rossi, Francesca (Parma, IMSEM) ; Cova, Francesca (Milan Bicocca U.) et al.
The use of scintillators for the detection of ionizing radiation is a critical aspect in many fields, including medicine, nuclear monitoring, and homeland security. Recently, lead halide perovskite nanocrystals (LHP-NCs) have emerged as promising scintillator materials. [...]
2023 - 12 p. - Published in : ACS Energy Letters 8 (2023) 3883-3894 Fulltext: PDF;
2.
Dual Cherenkov and Scintillation Response to High-Energy Electrons of Rare-Earth-Doped Silica Fibers / Cova, Francesca (Insubria U., Como ; Milan Bicocca U.) ; Lucchini, Marco T (Princeton U. ; CERN) ; Pauwels, Kristof (Milan Bicocca U. ; CERN) ; Auffray, Etiennette (CERN) ; Chiodini, Norberto (Insubria U., Como ; Milan Bicocca U.) ; Fasoli, Mauro (Insubria U., Como ; Milan Bicocca U.) ; Vedda, Anna (Insubria U., Como ; Milan Bicocca U.)
The investigation of the characteristic luminescent response of Ce-doped silica fibers exposed to electrons in the 20–200-GeV energy range is reported in this work to explore the feasibility of using silica-based fibers for a simultaneous dual-readout approach. The sol-gel method allows the preparation of either doped or undoped fibers with high aspect ratio and high purity, providing good flexibility and spatial resolution for the realization of a dual-readout detector. [...]
10.1103/PhysRevApplied.11.024036.- 2019 - 12 p. - Published in : Phys. Rev. Applied 11 (2019) 024036 Fulltext: PDF;
3.
Radiation hardness of Ce-doped sol-gel silica fibers for high energy physics applications / Cova, Francesca ; Moretti, Federico ; Fasoli, Mauro ; Chiodini, Norberto ; Pauwels, Kristof ; Auffray, Etiennette (CERN) ; Lucchini, Marco Toliman ; Baccaro, Stefania ; Cemmi, Alessia ; Bártová, Hana et al.
The results of irradiation tests on Ce-doped sol-gel silica using x- and 𝛾-rays up to 10 kGy are reported in order to investigate the radiation hardness of this material for high-energy physics applications. Sol-gel silica fibers with Ce concentrations of 0.0125 and 0.05 mol. [...]
2018 - Published in : Opt. Lett. 43 (2018) 903 Preprint: PDF;
4.
Optical properties and radiation hardness of Pr-doped sol-gel silica: Influence of fiber drawing process / Cova, Francesca (Milan Bicocca U.) ; Fasoli, Mauro (Milan Bicocca U.) ; Moretti, Federico (Milan Bicocca U.) ; Chiodini, Norberto (Milan Bicocca U.) ; Pauwels, Kristof (Milan Bicocca U.) ; Auffray, Etiennette (CERN) ; Toliman Lucchini, Marco (CERN) ; Bourret, Edith (LBNL, Berkeley) ; Veronese, Ivan (Milan U. ; INFN, Milan) ; d'Ippolito, Eduardo (Milan U.) et al.
The optical emission from the 5d – 4f allowed transition of Pr$^{3+}$ ions embedded in sol-gel silica is investigated for High Energy Physics applications requiring fast scintillating materials. A complete and detailed characterization of the optical, scintillation and radiation hardness properties of Pr-doped silica is carried out employing different experimental techniques including steady-state and time-resolved photo-luminescence, radio- and thermo-luminescence, scintillation and optical absorption. [...]
2017 - 7 p. - Published in : J. Lumin. 192 (2017) 661-667 External links: Fulltext; Fulltext; Fulltext; Fulltext
5.
Towards Bright and Fast Lu3Al5O12:Ce,Mg Optical Ceramics Scintillators / Liu, Shuping ; Mares, Jiri A. ; Feng, Xiqi ; Vedda, Anna ; Fasoli, Mauro ; Shi, Yun ; Kou, Huamin ; Beitlerova, Alena ; Wu, Lexiang ; D'Ambrosio, Carmelo (CERN) et al.
The recent advent of Lu 3 Al 5 O 12 :Ce optical ceramics marks a turning point in scintillator material technology. Because of their lower preparation tem-perature, brightness, and robustness such materials can now compete with single crystals. [...]
2016 - 9 p. - Published in : Adv. Opt. Mater. 4 (2016) 731-739

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