2012IEEE Transactions on Nuclear ScienceRequires access

Investigation of the Properties of ${\hbox {3}}^{\prime\prime}\times {\hbox {3}}^{\prime\prime}$ Different Scintillation Detectors for Neutron Activation Analysis Techniques

M. Gierlik, J. Iwanowska, T. Kozl̸owski, M. Moszyński, Ł. Świderski, T. Szczęśniak

Open publisher page 2 citations

Abstract

The quest for choosing the suitable detector for a specific homeland security application that takes an advantage of the neutron activation analysis technique prompted us to investigate properties of three$3^{\prime\prime}\times 3^{\prime\prime}$cylindrical scintillation detectors. The emphasis was put on the detectors' properties in the multi-MeV energy region and their response to the neutron radiation. In this work we compare the energy resolution, efficiency and timing properties of BGO,${\hbox {LaBr}}_{3}$and NaI(Tl) scintillation detectors coupled to Photonis spectrometric photomultiplier tubes.

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The quest for choosing the suitable detector for a specific homeland security application that takes an advantage of the neutron activation analysis technique prompted us to investigate properties of three$3^{\prime\prime}\times 3^{\prime\prime}$cylindrical scintillation detectors. The emphasis was put on the detectors' properties in the multi-MeV energy region and their response to the neutron radiation. In this work we compare the energy resolution, efficiency and timing properties of BGO,${\hbox {LaBr}}_{3}$and NaI(Tl) scintillation detectors coupled to Photonis spectrometric photomultiplier tubes.

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Available abstract

The quest for choosing the suitable detector for a specific homeland security application that takes an advantage of the neutron activation analysis technique prompted us to investigate properties of three$3^{\prime\prime}\times 3^{\prime\prime}$cylindrical scintillation detectors. The emphasis was put on the detectors' properties in the multi-MeV energy region and their response to the neutron radiation. In this work we compare the energy resolution, efficiency and timing properties of BGO,${\hbox {LaBr}}_{3}$and NaI(Tl) scintillation detectors coupled to Photonis spectrometric photomultiplier tubes.

Key concepts: Prime (order theory), Scintillation, Physics, Scintillator, Liquid scintillation counting, Neutron, Nuclear physics, Energy (signal processing)

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