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Performance of a monolithic LaBr3 : Ce crystal coupled to an array of silicon photomultipliers

Ulyanov, A. (författare)
School of Physics, University College Dublin, Ireland
Morris, O. (författare)
School of Physics, University College Dublin, Ireland; Galway-Mayo Institute of Technology, Galway, Ireland
Hanlon, L (författare)
School of Physics, University College Dublin, Ireland
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Mc Breen, S (författare)
School of Physics, University College Dublin, Ireland
Foley, S (författare)
School of Physics, University College Dublin, Ireland
Roberts, O (författare)
School of Physics, University College Dublin, Ireland
Tobin, I (författare)
School of Physics, University College Dublin, Ireland
Murphy, D (författare)
School of Physics, University College Dublin, Ireland
Wade, C (författare)
School of Physics, University College Dublin, Ireland
Nelms, N (författare)
European Space Agency, ESTEC
Shortt, B (författare)
European Space Agency, ESTEC
Slavicek, Tomas (författare)
Czech Technical University in Prague
Granja, C. (författare)
Czech Technical University in Prague
Solar, M. (författare)
Czech Technical University in Prague
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 (creator_code:org_t)
Elsevier BV, 2016
2016
Engelska.
Ingår i: Nuclear Instruments and Methods in Physics Research Section A. - : Elsevier BV. - 0168-9002 .- 1872-9576. ; 810:810, s. 107-119
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • A gamma-ray detector composed of a single 28×28×20 mm3 LaBr3:Ce crystal coupled to a custom built 4×4 array of silicon photomultipliers was tested over an energy range of 30 keV to 9.3 MeV. The silicon photomultipliers were initially calibrated using 20 ns light pulses generated by a light emitting diode. The photodetector responses measured as a function of the number of incident photons were found to be non-linear and consistent with model predictions. Using corrections for the non-linearity of the silicon photomultipliers, the detector showed a linear response to gamma-rays with energies from 100 keV to the maximum available energy of 9.3 MeV. The energy resolution was found to be 4% FWHM at 662 keV. Despite the large thickness of the scintillator (20 mm) and a 5 mm thick optical window, the detector was capable of measuring the positions of the gamma-ray interaction points. The position resolution was measured at 356 keV and was found to be 8 mm FWHM in the detector plane and 11 mm FWHM for the depth of interaction. The detector can be used as a building block of a larger calorimeter system that is capable of measuring gamma-ray energies up to tens of MeV.

Ämnesord

NATURVETENSKAP  -- Fysik -- Annan fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Other Physics Topics (hsv//eng)

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