γ-ray interaction characteristics for some boron containing materials

In the present work, we computed the γ-ray interaction characteristics of some boron containing materials such as B3Al2O3, B4C, B10H14 and ferro-boron (Fe–B) by means of effective atomic numbers and exposure buildup factors (EBF). The EBF of the materials were calculated using Geometric Progression...

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Veröffentlicht in:Vacuum 2015-03, Vol.113, p.24-27
Hauptverfasser: Singh, V.P., Badiger, N.M.
Format: Artikel
Sprache:eng
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Zusammenfassung:In the present work, we computed the γ-ray interaction characteristics of some boron containing materials such as B3Al2O3, B4C, B10H14 and ferro-boron (Fe–B) by means of effective atomic numbers and exposure buildup factors (EBF). The EBF of the materials were calculated using Geometric Progression (G-P) fitting for photon energy range 0.015–15 MeV up to penetration depth of 40 mean free path. The Fe–B is found to be the superior γ-ray shielding material. The results of the present work could be useful in radiation shielding applications in various neutron sources, reactors and accelerators. •γ-ray interaction characteristics for B3Al2O3, B4C, B10H14 and ferro-boron is studied.•Exposure buildup factors were calculated using G-P fitting method.•Fe–B is found to be the most efficient shielding material.•In low-energy the EBF converges whereas diverges for high-energies.
ISSN:0042-207X
1879-2715
DOI:10.1016/j.vacuum.2014.11.011