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Recombination in liquid-filled ionization chambers beyond the Boag limit

机译:充满液体的电离室中的重组超过了Boag限制

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摘要

Purpose: The high mass density and low mobilities of charge carriers can cause important recombination in liquid-filled ionization chambers (LICs). Saturation correction methods have been proposed for LICs. Correction methods for pulsed irradiation are based on Boag equation. However, Boag equation assumes that the charge ionized by one pulse is fully collected before the arrival of the next pulse. This condition does not hold in many clinical beams where the pulse repetition period may be shorter than the charge collection time, causing overlapping between charge carriers ionized by different pulses, and Boag equation is not applicable there. In this work, the authors present an experimental and numerical characterization of collection efficiencies in LICs beyond the Boag limit, with overlapping between charge carriers ionized by different pulses.
机译:目的:电荷载流子的高质量密度和低迁移率会在充满液体的电离室(LIC)中引起重要的重组。已经针对LIC提出了饱和校正方法。脉冲辐射的校正方法基于Boag方程。但是,Boag方程假设一个脉冲电离的电荷在下一个脉冲到达之前已被完全收集。这种情况在许多临床射线束中并不适用,在这些临床脉冲束中,脉冲重复周期可能比电荷收集时间短,从而导致被不同脉冲电离的电荷载流子之间发生重叠,因此Boag方程不适用于此。在这项工作中,作者提出了超过Boag极限的LICs的收集效率的实验和数值表征,其中载流子之间被不同的脉冲电离。

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