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Spectral method for the correction of the Cerenkov light effect in plastic scintillation detectors: A comparison study of calibration procedures and validation in Cerenkov light-dominated situations

机译:校正塑料闪烁探测器中切伦科夫光效应的光谱方法:在切伦科夫光为主的情况下校准程序和验证的比较研究

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摘要

>Purpose: The purposes of this work were: (1) To determine if a spectral method can accurately correct the Cerenkov light effect in plastic scintillation detectors (PSDs) for situations where the Cerenkov light is dominant over the scintillation light and (2) to develop a procedural guideline for accurately determining the calibration factors of PSDs.>Methods: The authors demonstrate, by using the equations of the spectral method, that the condition for accurately correcting the effect of Cerenkov light is that the ratio of the two calibration factors must be equal to the ratio of the Cerenkov light measured within the two different spectral regions used for analysis. Based on this proof, the authors propose two new procedures to determine the calibration factors of PSDs, which were designed to respect this condition. A PSD that consists of a cylindrical polystyrene scintillating fiber (1.6 mm3) coupled to a plastic optical fiber was calibrated by using these new procedures and the two reference procedures described in the literature. To validate the extracted calibration factors, relative dose profiles and output factors for a 6 MV photon beam from a medical linac were measured with the PSD and an ionization chamber. Emphasis was placed on situations where the Cerenkov light is dominant over the scintillation light and on situations dissimilar to the calibration conditions.>Results: The authors found that the accuracy of the spectral method depends on the procedure used to determine the calibration factors of the PSD and on the attenuation properties of the optical fiber used. The results from the relative dose profile measurements showed that the spectral method can correct the Cerenkov light effect with an accuracy level of 1%. The results obtained also indicate that PSDs measure output factors that are lower than those measured with ionization chambers for square field sizes larger than 25×25 cm2, in general agreement with previously published Monte Carlo results.>Conclusions: The authors conclude that the spectral method can be used to accurately correct the Cerenkov light effect in PSDs. The authors confirmed the importance of maximizing the difference of Cerenkov light production between calibration measurements. The authors also found that the attenuation of the optical fiber, which is assumed to be constant in the original formulation of the spectral method, may cause a variation of the calibration factors in some experimental setups.
机译:>目的:这项工作的目的是:(1)对于在切伦科夫光占主导地位的情况下,确定光谱方法是否可以准确校正塑料​​闪烁探测器(PSD)中的切伦科夫光效应。 (2)制定准确确定PSD校准因子的程序指南。>方法:作者通过使用光谱方法的方程式,证明了正确校正PSD的影响的条件。切伦科夫光是两个校准因子的比率必须等于在用于分析的两个不同光谱区域内测得的切伦科夫光的比率。基于这一证据,作者提出了两种新的程序来确定PSD的校准因子,这些程序旨在满足这种条件。通过使用这些新程序和文献中描述的两个参考程序,对由耦合到塑料光纤的圆柱形聚苯乙烯闪烁纤维(1.6 mm 3 )组成的PSD进行了校准。为了验证提取的校准因子,使用PSD和电离室测量了来自医用直线加速器的6 MV光子束的相对剂量分布和输出因子。重点放在切伦科夫光比闪烁光占优势的情况下以及与校准条件不同的情况下。>结果:作者发现光谱方法的准确性取决于确定光谱的方法。 PSD的校准因子以及所用光纤的衰减特性。相对剂量分布测量的结果表明,光谱法可以1%的准确度校正切伦科夫光效应。获得的结果还表明,对于大于25×25 cm 2 的方形场,PSDs的输出因子要比电离室的输出因子要低,这与以前发表的Monte Carlo结果基本一致。 >结论:作者得出结论,光谱方法可用于准确校正PSD中的切伦科夫光效应。作者证实了最大化校准测量之间的切伦科夫光产生差异的重要性。作者还发现,在光谱方法的原始公式中假定为恒定的光纤衰减在某些实验设置中可能导致校准因子的变化。

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