ÚTEFČVUT Ústav technické a experimentální fyziky ČVUT v PrazeInstitute of Experimental and Applied Physics, CTU in Prague

GAMMA SPECTROMETRY WITH CsI(Tl), NaI(Tl) AND CdWO4 SCINTILLATION CRYSTALS USING A SILICON PHOTOMULTIPLIER

NázevTitle
GAMMA SPECTROMETRY WITH CsI(Tl), NaI(Tl) AND CdWO4 SCINTILLATION CRYSTALS USING A SILICON PHOTOMULTIPLIERGAMMA SPECTROMETRY WITH CsI(Tl), NaI(Tl) AND CdWO4 SCINTILLATION CRYSTALS USING A SILICON PHOTOMULTIPLIER
Druh výsledkuResult type
Článek v časopiseJournal article
AutořiAuthors
R. Y.. Chaplynskyi, F. Danevich, D. V. Kasperovych, V. R. Klavdiienko
DOIDOI
10.15407/jnpae2026.02.148
Časopis / citaceJournal / citation
Nuclear Physics and Atomic Energy 27(2), 148-152 (2026) · ISSN 1818-331X
RokYear
2026
JazykLanguage
eng
ZáznamyRecords
ProjektProject
Laboratoire Souterrain de Modane - účast ČRLaboratoire Souterrain de Modane – participation of the Czech Republic
Citace ke staženíDownload citation
TXT · BibTeX

AbstraktAbstract

This study investigated using of silicon photomultiplier (SiPM) for scintillation gamma-spectrometry with CdWO4, CsI(Tl), and NaI(Tl) crystal scintillators. At room temperature, CsI(Tl) crystal scintillator provides the best performance, while the achievable energy resolution is lower compared to that obtained with conventional photomultiplier tube (PMT) with green-enhanced photocathode. These findings highlight the potential of SiPMs as a compact and cost-effective alternative to PMTs in nuclear physics applications, particularly for light portable spectrometers, such as radiation monitoring systems based on small unmanned aerial vehicles.

This study investigated using of silicon photomultiplier (SiPM) for scintillation gamma-spectrometry with CdWO4, CsI(Tl), and NaI(Tl) crystal scintillators. At room temperature, CsI(Tl) crystal scintillator provides the best performance, while the achievable energy resolution is lower compared to that obtained with conventional photomultiplier tube (PMT) with green-enhanced photocathode. These findings highlight the potential of SiPMs as a compact and cost-effective alternative to PMTs in nuclear physics applications, particularly for light portable spectrometers, such as radiation monitoring systems based on small unmanned aerial vehicles.

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