- S. Sharifi, R. Bagheri, S. P. Shirmardi. Comparison of shielding properties for ordinary, barite, serpentine and steel–magnetite concretes using MCNP-4C code and available experimental results. Ann. Nucl. Energy 53 (2013) 529–534.
- I. Akkurt, H. Akyıldırım, F. Karipcin, B. Mavi. Chemical corrosion on gamma ray attenuation properties of barite concrete. J. Saud. Chem. Soc. 16 (2012) 199–202.
- M. Kurudirek, Y. Özdemir, Ö. Şimşek, R. Durak. Comparison of some lead and non-lead based glass systems, standard shielding concretes and commercial window glasses in terms of shielding parameters in the energy region of 1 keV–100 GeV: a comparative study. J. Nucl. Mater. 407 (2010) 110–115.
- K. J. Singh, N. Singh, R. S. Kaundal, K. Singh. Gamma-ray shielding and structural properties of PbO–SiO2 glasses. Nucl. Instrum. Methods B 207 (2008) 944–948.
- R. Bagheri, A. K. Moghaddam, S. P. Shirmardi, B. Azadbakht, M. Salehi. Determination of Gamma-Ray Shielding Properties for Silicate Glasses Containing Bi2O3, PbO, and BaO. J. Non-Cryst. Solids 479 (2018) 62–71.
- K. Kirdsiri, J. Kaewkhao, N. Chanthima, P. Limsuwan, Comparative study of silicate glasses containing Bi2O3, PbO and BaO: radiation shielding and optical properties. Ann. Nucl. Energy 38 (2011) 1438–1441.
- B. Kerur, V. Manjula, M. Lagare, S. Kumar. Mass attenuation coefficient of saccharides for X-rays in the energy range from 8 keV to 32 keV. Radiat. Meas. 44 (2009) 63–67.
- M. Maqbool. Determination of transfer functions of MCP-200 alloy using 6 MV photon beam for beam intensity modulation. J. Mech. Med. Biol. 4 (2004) 305–310.
- J. Kaewkhao, P. Limsuwan, Mass attenuation coefficients and effective atomic numbers in phosphate glass containing Bi2O3, PbO and BaO at 662 keV. Nucl. Instrum. Methods A 619 (2010) 295–297.
- C. Bootjomchai, J. Laopaiboon, C. Yenchai, R. Laopaiboon, Gamma-ray shielding and structural properties of barium–bismuth–borosilicate glasses. Radiat. Phys. Chem. 81 (2012) 785–790.
- A. M. El-Khayatt, A. M. Ali, V. P. Singh. Photon attenuation coefficients of heavy-metal oxide glasses by MCNP code, XCOM program and experimental data: A comparison study. Nucl. Instrum. Methods Phys. Res. A 735 (2014) 207–212.
- A. M. Ali, A. M. El-Khayatt, I. Akkurt. Determination of effective atomic number and electron density of heavymetal oxide glasses. Radiat. Eff. Defects Solids. 171 (2016) 202–213.
- J. K. Shultis, R. E. Faw. An MCNP Primer. Department of Mechanical and Nuclear Engineering, Kansas State University, 2010.
- L. Gerward, N. Guilbert, K. B. Jensen, H. Levring. X-ray absorption in matter. Reengineering XCOM. Radiat. Phys. Chem. 60 (2001) 23–24.
- J. H. Hubbell, S. M. Seltzer. Tables of X-ray mass attenuation coefficients and mass energy-absorption coefficients 1 keV-20 MeV for elements 1 < Z < 92 and 48 additional substances of dosimetric interest, National Institute of Standards and Physics Laboratory, NISTIR, 1995, p. 5632.
|