Monte Carlo simulation of beta-gamma coincidence system using plastic scintillators in 4pi geometry

dc.contributor.authorDIAS, M.S.pt_BR
dc.contributor.authorPIUVEZAM FILHO, HELIOpt_BR
dc.contributor.authorBACCARELLI, A.M.pt_BR
dc.contributor.authorTAKEDA, M.N.pt_BR
dc.contributor.authorKOSKINAS, MARINA F.pt_BR
dc.coverageInternacionalpt_BR
dc.date.accessioned2014-07-15T13:44:57Zpt_BR
dc.date.accessioned2014-07-30T11:48:12Z
dc.date.available2014-07-15T13:44:57Zpt_BR
dc.date.available2014-07-30T11:48:12Z
dc.date.issued2007pt_BR
dc.description.abstractA modified version of a Monte Carlo code called Esquema, developed at the Nuclear Metrology Laboratory in IPEN, São Paulo, Brazil, has been applied for simulating a 4πβ(PS)–γ coincidence system designed for primary radionuclide standardisation. This system consists of a plastic scintillator in 4π geometry, for alpha or electron detection, coupled to a NaI(Tl) counter for gamma-ray detection. The response curves for monoenergetic electrons and photons have been calculated previously by Penelope code and applied as input data to code Esquema. The latter code simulates all the disintegration processes, from the precursor nucleus to the ground state of the daughter radionuclide. As a result, the curve between the observed disintegration rate as a function of the beta efficiency parameter can be simulated. A least-squares fit between the experimental activity values and the Monte Carlo calculation provided the actual radioactive source activity, without need of conventional extrapolation procedures. Application of this methodology to 60Co and 133Ba radioactive sources is presented and showed results in good agreement with a conventional proportional counter 4πβ(PC)–γ coincidence system.
dc.format.extent380-383pt_BR
dc.identifier.citationDIAS, M.S.; PIUVEZAM FILHO, HELIO; BACCARELLI, A.M.; TAKEDA, M.N.; KOSKINAS, MARINA F. Monte Carlo simulation of beta-gamma coincidence system using plastic scintillators in 4pi geometry. <b>Nuclear Instruments and Methods in Physics Research</b>, v. 580, p. 380-383, 2007. Section A. DOI: <a href="https://dx.doi.org/10.1016/j.nima.2007.05.183">10.1016/j.nima.2007.05.183</a>. Disponível em: http://repositorio.ipen.br/handle/123456789/5165.
dc.identifier.doi10.1016/j.nima.2007.05.183
dc.identifier.issn0168-9002pt_BR
dc.identifier.orcidhttps://orcid.org/0000-0001-8407-9833
dc.identifier.orcidhttps://orcid.org/0000-0003-2478-5757
dc.identifier.suplementoSection Apt_BR
dc.identifier.urihttp://repositorio.ipen.br/handle/123456789/5165pt_BR
dc.identifier.vol580pt_BR
dc.relation.ispartofNuclear Instruments and Methods in Physics Researchpt_BR
dc.rightsopenAccessen
dc.subjectmonte carlo methodpt_BR
dc.subjectcoincidence methodspt_BR
dc.subjectcalibration standardspt_BR
dc.subjectplastic scintillatorspt_BR
dc.subjectelectron detectionpt_BR
dc.subjectgamma detectionpt_BR
dc.titleMonte Carlo simulation of beta-gamma coincidence system using plastic scintillators in 4pi geometrypt_BR
dc.typeArtigo de periódicopt_BR
dspace.entity.typePublication
ipen.autorMARINA FALLONE KOSKINAS
ipen.autorHELIO PIUVEZAM FILHO
ipen.autorMAURO DA SILVA DIAS
ipen.codigoautor1387
ipen.codigoautor3333
ipen.codigoautor1292
ipen.contributor.ipenauthorMARINA FALLONE KOSKINAS
ipen.contributor.ipenauthorHELIO PIUVEZAM FILHO
ipen.contributor.ipenauthorMAURO DA SILVA DIAS
ipen.date.recebimento08-07pt_BR
ipen.identifier.fi1.114pt_BR
ipen.identifier.ipendoc12730pt_BR
ipen.identifier.iwosWoSpt_BR
ipen.range.fi0.001 - 1.499
ipen.type.genreArtigo
relation.isAuthorOfPublication420a8816-64da-4bb8-a1c4-5b8b638033b1
relation.isAuthorOfPublication1537deb2-f766-4dc2-a358-fe573f925c02
relation.isAuthorOfPublication58653850-db59-4051-aa72-5c32a5f6670e
relation.isAuthorOfPublication.latestForDiscovery58653850-db59-4051-aa72-5c32a5f6670e
sigepi.autor.atividadeDIAS, M.S.:1292:6:Spt_BR
sigepi.autor.atividadePIUVEZAM FILHO, HELIO:3333:6:Npt_BR
sigepi.autor.atividadeKOSKINAS, MARINA F.:1387:6:Npt_BR

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