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Optimization of quasi-hemispherical CdZnTe detectors by means of first principles simulation

dc.contributor.authorVicini, Valentina
dc.contributor.authorZanettini, Silvia
dc.contributor.authorSarzi Amade, Nicola
dc.contributor.authorGrill, Roman
dc.contributor.authorZambelli, Nicola
dc.contributor.authorCalestani, Davide
dc.contributor.authorZappettini, Andrea
dc.contributor.authorAbbene, Leonardo
dc.contributor.authorBettelli, Manuele
dc.date.accessioned2024-03-04T09:13:35Z
dc.date.available2024-03-04T09:13:35Z
dc.date.issued2023
dc.identifier.urihttps://hdl.handle.net/20.500.14178/2359
dc.description.abstractIn this paper we present the development of quasi-hemispherical gamma-ray detectors based on CdZnTe. Among the possible single-polarity electrode configurations, such as coplanar, pixelated, or virtual Frisch-grid geometries, quasi-hemispherical detectors are the most cost-effective alternative with comparable raw energy resolution in the high and low energy range. The optimal configuration of the sensor in terms of dimension of the crystals and electrode specifications has been first determined by simulations, and successively validated with experimental measures. Spectra from different sources have been acquired to evaluate the detectors performances. Three types of detectors with different CZT volumes have been fabricated, namely 10 x 10 x 5 mm(3), 15 x 15 x 10 mm(3) and 20 x 20 x 10 mm(3). In the case of 10 x 10 x 5 mm(3) crystals, the optimum pixel size determined by our simulation tool was confirmed by experiments: the best spectroscopic resolution of 1.3% at 662 keV has been found for a 750 µm diameter pixel detector. The best energy resolution values obtained for the 15 x 15 x 10 mm(3) and 20 x 20 x 10 mm(3) detectors were respectively 1.7% and 2.7% at 662 keV.en
dc.language.isoen
dc.relation.urlhttps://doi.org/10.1038/s41598-023-30181-2
dc.rightsCreative Commons Uveďte původ 4.0 Internationalcs
dc.rightsCreative Commons Attribution 4.0 Internationalen
dc.titleOptimization of quasi-hemispherical CdZnTe detectors by means of first principles simulationen
dcterms.accessRightsopenAccess
dcterms.licensehttps://creativecommons.org/licenses/by/4.0/legalcode
dc.date.updated2024-03-04T09:13:35Z
dc.subject.keywordCdZnTeen
dc.subject.keyworddetectorsen
dc.subject.keywordsimulationen
dc.subject.keywordspectroscopyen
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/COOP/COOP
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/GA0/GA/GA19-11920S
dc.date.embargoStartDate2024-03-04
dc.type.obd73
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.identifier.doi10.1038/s41598-023-30181-2
dc.identifier.utWos000942280900008
dc.identifier.eidScopus2-s2.0-85148965519
dc.identifier.obd640821
dc.identifier.pubmed36828862
dc.subject.rivPrimary10000::10300::10302
dcterms.isPartOf.nameScientific Reports
dcterms.isPartOf.issn2045-2322
dcterms.isPartOf.journalYear2023
dcterms.isPartOf.journalVolume13
dcterms.isPartOf.journalIssue1
uk.faculty.primaryId116
uk.faculty.primaryNameMatematicko-fyzikální fakultacs
uk.faculty.primaryNameFaculty of Mathematics and Physicsen
uk.department.primaryId1191
uk.department.primaryNameFyzikální ústav UKcs
uk.department.primaryNameInstitute of Physics of Charles Universityen
dc.type.obdHierarchyCsČLÁNEK V ČASOPISU::článek v časopisu::původní článekcs
dc.type.obdHierarchyEnJOURNAL ARTICLE::journal article::original articleen
dc.type.obdHierarchyCode73::152::206en
uk.displayTitleOptimization of quasi-hemispherical CdZnTe detectors by means of first principles simulationen


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