Comparisons of Monte Carlo and ICRU electron energy vs. range equations

Author:

Cleland M.R,Lisanti T.F,Galloway R.A

Publisher

Elsevier BV

Subject

Radiation

Reference12 articles.

1. Andreo, P., Ito, R., Tabata, T., 1992. Tables of charge- and energy-deposition distributions in elemental materials irradiated by plane-parallel electron beams with energies between 0.1 and 100MeV, ISSN 0917-8015. Technical Report No. 1, Research Institute for Advanced Science and Technology, University of Osaka Prefecture, 1-2 Gakuen-Cho, Sakai, Osaka 593, Japan.

2. ASTM, 2003. Standard Practice for Dosimetry in an Electron Beam Facility for Radiation Processing at Energies Between 300keV and 25MeV, ISO/ASTM 51649:2002(E). Annual Book of ASTM Standards, American Society for Testing and Materials. West Conshohocken, Pennsylvania, USA.

3. CCC-467/ITS Code Package, 1994. Integrated TIGER series of coupled electron/photon Monte Carlo transport codes, ITS Version 3.0. Radiation Safety Information Computational Center (RSICC), Oak Ridge, TN, USA.

4. Cleland, M.R., Lisanti, T.F., Galloway, R.A., 2003. Equations relating theoretical electron range values to incident electron energies for water and polystyrene. RDI-IBA Technical Information Series TIS 1556, 2003, available from IBA Technology Group, Edgewood, NY, USA, getinfo@iba-rdi.com.

5. Galloway, R.A., Lisanti, T.F., Cleland, M.R., 2003. Electron beam energy determinations by comparing calculated and measured depth–dose distributions in polystyrene slab absorbers. RDI-IBA Technical Information Series TIS 1548, 2003, available from IBA Technology Group, Edgewood, NY, USA, getinfo@iba-rdi.com.

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