Integral particle reflection coefficient for oblique incidence of photons as universal function in the domain of initial energies up to 300 keV
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Published:2014
Issue:4
Volume:29
Page:274-278
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ISSN:1451-3994
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Container-title:Nuclear Technology and Radiation Protection
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language:en
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Short-container-title:NUCL TECH RAD PROT
Author:
Ljubenov Vladan1,
Simovic Rodoljub2
Affiliation:
1. Vienna International Centre, International Atomic Energy Agency, Vienna, Austria
2. Union - Nikola Tesla University, Faculty of Ecology and Environmental Protection, Belgrade + Public Company Nuclear Facilities of Serbia, Belgrade
Abstract
In this paper we present the results of calculations and analyses of the
integral particle reflection coefficient of photons for oblique photon
incidence on planar targets, in the domain of initial photon energies from
100 keV to 300 keV. The results are based on the Monte Carlo simulations of
the photon reflection from water, concrete, aluminum, iron, and copper
materials, performed by the MCNP code. It has been observed that the integral
particle reflection coefficient as a function of the ratio of total
cross-section of photons and effective atomic number of target material shows
universal behavior for all the analyzed shielding materials in the selected
energy domain. Analytical formulas for different angles of photon incidence
have been proposed, which describe the reflection of photons for all the
materials and energies analyzed.
Publisher
National Library of Serbia
Subject
Safety, Risk, Reliability and Quality,Nuclear Energy and Engineering