Stopping power and CSDA range calculations of electrons and positrons over the 20 eV-1 GeV energy range in some water equivalent polymer gel dosimeters

被引:5
作者
Osman, Hikmet [1 ]
Gumus, Hasan [2 ]
机构
[1] Ondokuz Mayis Univ, Inst Grad Studies, Phys Dept, TR-55139 Samsun, Turkey
[2] Ondokuz Mayis Univ, Sci & Arts Fac, Phys Dept, TR-55139 Samsun, Turkey
关键词
Effective charge; Effective mean excitation energy; Collision stopping power; Radiative stopping power; Total stopping power; Radiation yield; CSDA range; Electron; Positron; FORMULA;
D O I
10.1016/j.apradiso.2021.110024
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
In this study, the stopping power, CSDA range and radiation yield calculations of electrons and positrons over the 20 eV-1 GeV energy range in some water equivalent polymer gel dosimeters were performed. For collision stopping power calculations of electrons and positrons the effective charge concept proposed by Sugiyama were considered. Here, both the effective charge of incident electrons and positrons (z*) and the effective charge (Z*) and the effective mean excitation energy (I*) of the target material were calculated. For the density effect correction the Fano model was selected. For the radiative stopping power analytical model based on the ratio between the collision and the radiative stopping power discribed by Attix was considered. For CSDA range and radition yield the continuous slowing down approximation (CSDA) was considered and the calculations were performed using numerical integral methods. Because of their water equivalent and 3D dose distribution properties, MAGIC and MAGAS polymer gels were selected as a target materials. The calculations were performed by programming all the equations discribed in this study as a computational code. The results of the stopping power, range and radiation yield were compared with those of ESTAR program and PENELOPE Monte Carlo modelling. Some deviations in low and high energy region between the calculated and reference data were observed. However, the similarity between calculated and reference data is remarkable. For the collision stopping power and CSDA range a good agreement between the calculated and reference data was observed for energies >1 keV. Whereas, for the radiative stopping power a good agreement was observed for energies >100 keV.
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页数:10
相关论文
共 28 条
[1]   Electron stopping power in biological compounds for low and intermediate energies with the generalized oscillator strength (GOS) model [J].
Akar, A ;
Gümüs, H .
RADIATION PHYSICS AND CHEMISTRY, 2005, 73 (04) :196-203
[2]   Radiological properties of MAGIC normoxic polymer gel dosimetry [J].
Aljamal, M. ;
Zakaria, A. ;
Shamsuddin, S. .
2013 INTERNATIONAL CONFERENCE ON SCIENCE & ENGINEERING IN MATHEMATICS, CHEMISTRY AND PHYSICS (SCIETECH 2013), 2013, 423
[3]  
[Anonymous], 2008, Introduction to Radiological Physics and Radiation Dosimetry
[4]  
Berger Martin J., 1982, Stopping powers and ranges of electrons and positrons
[5]   On the alpha particles of radium, and their loss of range in passing through various atoms and molecules [J].
Bragg, W. H. ;
Elder, M. A. .
PHILOSOPHICAL MAGAZINE, 1905, 10 (55-60) :318-340
[6]   Bethe theory of stopping incorporating electronic excitations of partially stripped projectiles [J].
CabreraTrujillo, R ;
Cruz, SA ;
Oddershede, J ;
Sabin, JR .
PHYSICAL REVIEW A, 1997, 55 (04) :2864-2872
[7]   Inelastic scattering of electron and light ion beams in organic polymers [J].
de Vera, Pablo ;
Abril, Isabel ;
Garcia-Molina, Rafael .
JOURNAL OF APPLIED PHYSICS, 2011, 109 (09)
[8]  
El-Ghossain MO., 2017, INT J SCI TECHNOL RE, V6, P2277
[9]   Accurate electron inelastic cross sections and stopping powers for liquid water over the 0.1-10 keV range based on an improved dielectric description of the bethe surface [J].
Emfietzoglou, D. ;
Nikjoo, H. .
RADIATION RESEARCH, 2007, 167 (01) :110-120
[10]   ATOMIC THEORY OF ELECTROMAGNETIC INTERACTIONS IN DENSE MATERIALS [J].
FANO, U .
PHYSICAL REVIEW, 1956, 103 (05) :1202-1218