Monte Carlo simulation of Auger electron cascades versus experimental data

被引:6
|
作者
Pomplun, Ekkehard [1 ]
机构
[1] Forschungszentrum Julich, Safety & Radiat Protect Div, D-52425 Julich, Germany
来源
BIOMEDICAL PHYSICS & ENGINEERING EXPRESS | 2016年 / 2卷 / 01期
关键词
Auger electron emitter; Monte Carlo simulation; K-shell transition; iron-55; technetium-99m; indium-111; iodine-125;
D O I
10.1088/2057-1976/2/1/015014
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
To further validate a Monte Carlo simulation code for Auger electron cascades, K-shell transitions in decaying Fe-55, In-111 and I-125 should be studied and compared with experimentally obtained spectra from the literature. The code used transition probabilities for singly ionized atoms and an external Dirac-Fock-based computer program enabling the determination of atomic energy levels characterized by specific electron configurations created within the transition cascades. In view of the radiobiophysical purposes, in particular the track structure calculations, for which the electron emission spectra of individual nuclide decays are needed as input data, the results agree very well with the experimental findings for all three nuclides. Moreover, new complete Auger electron spectra for individual decays of Fe-55 and In-111 were simulated.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Monte Carlo simulation of electron slowing down in indium
    Rouabah, Z.
    Hannachi, M.
    Champion, C.
    Bouarissa, N.
    JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA, 2015, 202 : 7 - 10
  • [42] Monte Carlo simulation of electron dynamics in liquid water
    Huthmacher, Klaus
    Herzwurm, Andre
    Gnewuch, Michael
    Ritter, Klaus
    Rethfeld, Baerbel
    PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 2015, 429 : 242 - 251
  • [43] Monte Carlo simulation of electron velocity in degenerate GaAs
    Miranda, JM
    Franco, JLS
    IEEE ELECTRON DEVICE LETTERS, 1997, 18 (06) : 258 - 260
  • [44] Monte Carlo simulation of a total skin electron technique
    Gutierez, L
    Papanikolaou, N
    Yan, Y
    Wu, C
    MEDICAL PHYSICS, 2003, 30 (06) : 1515 - 1515
  • [45] Improved Monte Carlo Simulation of Small Electron Fields
    O'Shea, T.
    Faddegon, B.
    Sawkey, D.
    Foley, M.
    MEDICAL PHYSICS, 2009, 36 (06) : 2703 - +
  • [46] Monte Carlo simulation of electron interaction with a thin film
    Stary, V
    THIN SOLID FILMS, 2003, 433 (1-2) : 326 - 331
  • [47] A Monte Carlo simulation of secondary electron transport in diamond
    Li Peng
    Xu Zhou
    Li Ming
    Yang Xing-Fan
    ACTA PHYSICA SINICA, 2012, 61 (07)
  • [48] Monte Carlo simulation of projection electron beam lithography
    Sun, X.
    Xiao, P.
    Ding, Z. J.
    NANOSCIENCE AND TECHNOLOGY, PTS 1 AND 2, 2007, 121-123 : 1097 - 1101
  • [49] Monte Carlo simulation of electrochemical electron transfer processes
    Kuznetsov, AM
    Nazmutdinov, RR
    Schmickler, W
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2002, 532 (1-2): : 171 - 180
  • [50] Monte Carlo simulation of electron transport in doped silicon
    KaiblingerGrujin, G
    Kosina, H
    Selberherr, S
    HIGH PERFORMANCE COMPUTING ON THE INFORMATION SUPERHIGHWAY - HPC ASIA '97, PROCEEDINGS, 1997, : 444 - 449