2018
DOI: 10.1134/s0020441217060173
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Energy Broadening Model for BGO Array Crystal from 0.059 to 1.332 MeV

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Cited by 2 publications
(5 citation statements)
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“…This parameter defines the capability of the detector to distinguish the different energy peaks in a multi-energy photon beam. In general, the energy resolution is commonly determined/affected by the factors such as; 1) fluctuation in the light generation for the same mono-energy irradiation, 2) the non-proportionality of light response, 3) statistical fluctuation in charge collection in the anode of the photomultiplier tube and 4) electronics noise [7,8,9]. In Monte Carlo simulation (particularly MCNP platform), Gaussian energy broadening (GEB) is a special order for tallies to better simulate a radiation detector whose energy peaks exhibit Gaussian energy broadening.…”
Section: Imentioning
confidence: 99%
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“…This parameter defines the capability of the detector to distinguish the different energy peaks in a multi-energy photon beam. In general, the energy resolution is commonly determined/affected by the factors such as; 1) fluctuation in the light generation for the same mono-energy irradiation, 2) the non-proportionality of light response, 3) statistical fluctuation in charge collection in the anode of the photomultiplier tube and 4) electronics noise [7,8,9]. In Monte Carlo simulation (particularly MCNP platform), Gaussian energy broadening (GEB) is a special order for tallies to better simulate a radiation detector whose energy peaks exhibit Gaussian energy broadening.…”
Section: Imentioning
confidence: 99%
“…In this regard, an energy broadening model for Bismuth germanium oxide (BGO) detector was developed by Askari et al [8] wherein the GEB parameters for a 10 × 10 BGO array were calculated for the task of spectral response analysis in the presence of the wide energy range of gamma-rays in a simulation setting.…”
Section: Imentioning
confidence: 99%
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