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俄歇级联的蒙特卡罗模拟。

A Monte Carlo simulation of Auger cascades.

作者信息

Pomplun E, Booz J, Charlton D E

机构信息

Institute of Medicine, Nuclear Research Center Jülich, Federal Republic of Germany.

出版信息

Radiat Res. 1987 Sep;111(3):533-52.

PMID:3659286
Abstract

The energy imparted to biological tissue after the decay of incorporated Auger emitters stems from two sources: (a) energy deposition by the Auger and Coster-Kronig electrons and (b) the charge potential which remains on the multiple ionized atom after the end of the cascade. For the numerical assessment of both the kinetic energy of the released electrons and the charge potential, a new and--for purposes of microdosimetry--precise method is presented. Based on relativistic Dirac-Fock calculations and a rigorous bookkeeping, this method provides a perfect energy balance of the considered atomic system when applied to Monte Carlo simulations of Auger cascades. By comparing the results for charge distribution for krypton and iodine with experimental data and the electron spectrum of 125I with theoretical data, it can be shown that the approach followed in this work is reasonable and appropriate for the determination of the energy deposited by incorporated Auger emitters in small volumes of condensed matter. The total energy deposited by 125I in a volume of 20-nm diameter is 2.03 keV which is made up by multiple ionization (1.07 keV) and energy deposition by the emitted Auger electrons (0.96 keV).

摘要

掺入的俄歇发射体衰变后赋予生物组织的能量有两个来源

(a)俄歇电子和科斯特-克勒尼希电子的能量沉积,以及(b)级联结束后留在多电离原子上的电荷势。为了对释放电子的动能和电荷势进行数值评估,本文提出了一种新的且在微剂量学方面精确的方法。基于相对论狄拉克-福克计算和严格的记录,该方法在应用于俄歇级联的蒙特卡罗模拟时,能为所考虑的原子系统提供完美的能量平衡。通过将氪和碘的电荷分布结果与实验数据以及125I的电子能谱与理论数据进行比较,可以表明本文所采用的方法对于确定掺入的俄歇发射体在小体积凝聚态物质中沉积的能量是合理且合适的。125I在直径为20纳米的体积中沉积的总能量为2.03千电子伏特,其中包括多次电离(1.07千电子伏特)和发射的俄歇电子的能量沉积(0.96千电子伏特)。

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