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首页> 外文期刊>Medical Physics >Saturation current and collection efficiency for ionization chambers in pulsed beams.
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Saturation current and collection efficiency for ionization chambers in pulsed beams.

机译:脉冲束中电离室的饱和电流和收集效率。

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摘要

Saturation currents and collection efficiencies in ionization chambers exposed to pulsed megavoltage photon and electron beams are determined assuming a linear relationship between 1/I and 1/V in the extreme near-saturation region, with I and V the chamber current and polarizing voltage, respectively. Careful measurements of chamber current against polarizing voltage in the extreme near-saturation region reveal a current rising faster than that predicted by the linear relationship. This excess current combined with conventional "two-voltage" technique for determination of collection efficiency may result in an up to 0.7% overestimate of the saturation current for standard radiation field sizes of 10X10 cm2. The measured excess current is attributed to charge multiplication in the chamber air volume and to radiation-induced conductivity in the stem of the chamber (stem effect). These effects may be accounted for by an exponential term used in conjunction with Boag's equation for collection efficiency in pulsed beams. The semiempirical model follows the experimental data well and accounts for both the charge recombination as well as for the charge multiplication effects and the chamber stem effect.
机译:假定暴露在极接近饱和区域的1 / I和1 / V之间存在线性关系,确定暴露于脉冲兆伏光子和电子束的电离室中的饱和电流和收集效率,其中I和V分别为室电流和极化电压。仔细测量腔室电流对极端接近饱和区域中的极化电压的影响,发现电流的上升速度快于线性关系所预测的速度。这种过大的电流与用于确定收集效率的常规“双电压”技术相结合,可能会导致对10X10 cm2的标准辐射场大小的饱和电流高估多达0.7%。测得的过电流归因于腔室空气体积中的电荷倍增以及腔室杆中的辐射感应电导率(干效应)。这些影响可以通过与Boag方程结合使用的指数项来解释,该方程用于收集脉冲束中的收集效率。半经验模型很好地遵循了实验数据,并说明了电荷复合以及电荷倍增效应和腔杆效应。

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