Papin P J, Rielly P S
Department of Physics, San Diego State University, California 92182.
Med Phys. 1988 Nov-Dec;15(6):909-14. doi: 10.1118/1.596268.
A Monte Carlo method was developed and implemented to simulate x-ray photon transport. Simulations consisted of a pencil beam of monoenergetic photons with energies from 50 to 110 keV incident on water and aluminum slabs. The dependence of scatter fraction and multiple scattering on x-ray energy, scatterer thickness, and material is reported in both number and energy fluence. The average energy of scattered photons reaching the detector plane is also reported. Comparisons are made to previous x-ray scatter computations.
开发并实施了一种蒙特卡罗方法来模拟X射线光子传输。模拟包括一束单能光子的铅笔束,其能量范围为50至110keV,入射到水和铝板上。在数量和能量注量方面都报告了散射分数和多次散射对X射线能量、散射体厚度和材料的依赖性。还报告了到达探测器平面的散射光子的平均能量。并与先前的X射线散射计算进行了比较。