Monte Carlo simulation for photon energy response from the RADOS dosemeter

Author:

da Silva Ferreira Max1

Affiliation:

1. Department of Nuclear Physics, Institute of Physics, University of São Paulo, Rua do Matão 1371 , CEP 05508-090 São Paulo , Brazil

Abstract

Abstract Ionizing radiation interaction models are commonly included in Monte Carlo codes. However, as there are different models and different output quantities available, it is important to understand the physical phenomena used. So, the aim of this study is to analyze the photon interaction model called Simple Physical Treatment of the Monte Carlo code MCNPX to estimate the energy dependence of photons from the RADOS dosemeter and to validate this calculation method by comparing it with experimental results found in the literature. The energy deposition in the MTS-N detector and the air kerma were obtained accompanied by their uncertainties, which varied between 1.5% and 3.0%. The RADOS dosemeter simulation and the calculation methodology applied in this study have been validated. Therefore, when using the Simple Physical Treatment model, the effective dose can be corrected by a correction factor calculated from the simulated results.

Funder

University of São Paulo

Publisher

Oxford University Press (OUP)

Reference9 articles.

1. Critérios para cálculo de dose efetiva, a partir da monitoração individual;Comissão Nacional de Energia Nuclear;Posição Regulatória 3.01/005,2018

2. Algorithm to assess neutron HP (10) with estimation of uncertainties using Alnor albedo dosemeters: application in Brazilian nuclear power plants;da Max;Braz J Radiat Sciences,2022

3. Measurements and Monte Carlo simulations of the response of the RADOS personal dosemeters with MTS-N (LiF: Mg, Ti) and MCP-N (LiF: Mg, Cu, P) thermoluminescent detectors to X- and gamma-rays;Obryk;Radiat Meas,2008

4. MCNP - A General Monte Carlo N-Particle Transport Code - Version 5. Version 5 Volume I: Overview and Theory;Los Alamos National Laboratory,2008

5. Radioproteção e Dosimetria: Fundamentos. 10ª revisão;Tauhata,2014

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