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自由电子收集对脉冲辐射电离测量中复合校正的影响。

The effect of free-electron collection on the recombination correction to ionization measurements of pulsed radiation.

作者信息

Boag J W, Hochhäuser E, Balk O A

机构信息

GSF Forschungszentrum für Umwelt und Gesundheit, Neuherberg Institut für Strahlenschutz, Oberschleissheim, Germany.

出版信息

Phys Med Biol. 1996 May;41(5):885-97. doi: 10.1088/0031-9155/41/5/005.

Abstract

Three models of the charge collection process in small dosimetric ionization chambers exposed to pulsed radiation are discussed. All three models allow for the presence of a free-electron component in the charge transfer, incorporating this into the model in slightly different ways, and the resulting collection efficiency formulae are compared over the range of variables normally met within clinical dosimetry. Measurements of the free-electron fraction for plane-parallel ionization chambers and for a Baldwin-Farmer 0.6 cm3 chamber are presented. The proportion of free electrons at the normal operating voltage is often high in small chambers but it is obvious that this can only lead to an increase in collection efficiency if the f-value calculated for purely ionic conduction allows for some improvement. Thus, a 50% free-electron fraction in a chamber which collects ions with efficiency f = 0.9950 at low pulse doses will increase this efficiency to only 0.9982. The same chamber, at the same operating voltage, and therefore the same free-electron fraction, if exposed to larger pulse doses, yielding an efficiency of 0.9531 as calculated for ions alone, would have a true efficiency of 0.9830-a large change.

摘要

本文讨论了小型剂量电离室在脉冲辐射下电荷收集过程的三种模型。所有这三种模型都考虑了电荷转移中自由电子成分的存在,并以略有不同的方式将其纳入模型中。同时,在临床剂量学通常遇到的变量范围内,对由此产生的收集效率公式进行了比较。文中还给出了平行板电离室和鲍德温 - 法默0.6 cm³电离室的自由电子分数测量结果。在小型电离室中,正常工作电压下自由电子的比例通常较高,但很明显,只有当纯离子传导计算出的f值允许有所提高时,这才会导致收集效率的增加。因此,在一个低脉冲剂量下收集离子效率f = 0.9950的电离室中,50%的自由电子分数只会将效率提高到0.9982。同一个电离室,在相同的工作电压下,因此自由电子分数相同,如果暴露于更大的脉冲剂量下,仅离子传导计算出的效率为0.9531,那么其实际效率将为0.9830——这是一个很大的变化。

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