2022
DOI: 10.1016/j.nimb.2022.03.007
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Contribution of compound, preequilibrium and direct reactions to photoneutron emission spectrum from various targets induced by 16.6-MeV monoenergetic photons

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Cited by 5 publications
(3 citation statements)
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“…The last update (IAEA/PD-2019.2) was released in October 2022 [18]. In 2022, Bakhtiari and colleagues [15] studied the production of photoneutrons by irradiating 16.6 MeV monoenergetic photons to gold, lead, tin, and copper targets using the MCNP6.1, FLUKA and PHITS codes. They showed that different codes produce relatively different results due to the use of various models and photoneutron cross-sections.…”
Section: Jinst 18 P05021mentioning
confidence: 99%
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“…The last update (IAEA/PD-2019.2) was released in October 2022 [18]. In 2022, Bakhtiari and colleagues [15] studied the production of photoneutrons by irradiating 16.6 MeV monoenergetic photons to gold, lead, tin, and copper targets using the MCNP6.1, FLUKA and PHITS codes. They showed that different codes produce relatively different results due to the use of various models and photoneutron cross-sections.…”
Section: Jinst 18 P05021mentioning
confidence: 99%
“…Deuterium and beryllium nuclei are interesting due to their low energy threshold (2.22 MeV and 1.67 MeV, respectively) for photonuclear interactions [10]. Many simulations have been performed using different Monte Carlo codes (such as GEANT4 [11], MCNP [1,12], FLUKA [13,14] and PHITS [15], etc) to generate photoneutron sources through an electron LINAC. In ref [11], the authors simulated a photoneutron source through a 10 MeV electron beam using the GEANT4 code.…”
Section: Introductionmentioning
confidence: 99%
“…Comparisons of the experimental DDXs among PHITS, MCNP, and FLUKA were studied and reported in a previous study [9]. However, the consistency between DDXs obtained from experimental data and nuclear data libraries (NDLs) for the (,xn) reaction has not yet been studied.…”
Section: Introductionmentioning
confidence: 99%