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Study of the response of plastic scintillation detectors in small-field 6 MV photon beams by Monte Carlo simulations

机译:通过Monte Carlo模拟研究6 MV小视场光束中塑料闪烁探测器的响应

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摘要

>Purpose: To investigate the response of plastic scintillation detectors (PSDs) in a 6 MV photon beam of various field sizes using Monte Carlo simulations.>Methods: Three PSDs were simulated: A BC-400 and a BCF-12, each attached to a plastic-core optical fiber, and a BC-400 attached to an air-core optical fiber. PSD response was calculated as the detector dose per unit water dose for field sizes ranging from 10×10 down to 0.5×0.5 cm2 for both perpendicular and parallel orientations of the detectors to an incident beam. Similar calculations were performed for a CC01 compact chamber. The off-axis dose profiles were calculated in the 0.5×0.5 cm2 photon beam and were compared to the dose profile calculated for the CC01 chamber and that calculated in water without any detector. The angular dependence of the PSDs’ responses in a small photon beam was studied.>Results: In the perpendicular orientation, the response of the BCF-12 PSD varied by only 0.5% as the field size decreased from 10×10 to 0.5×0.5 cm2, while the response of BC-400 PSD attached to a plastic-core fiber varied by more than 3% at the smallest field size because of its longer sensitive region. In the parallel orientation, the response of both PSDs attached to a plastic-core fiber varied by less than 0.4% for the same range of field sizes. For the PSD attached to an air-core fiber, the response varied, at most, by 2% for both orientations.>Conclusions: The responses of all the PSDs investigated in this work can have a variation of only 1%–2% irrespective of field size and orientation of the detector if the length of the sensitive region is not more than 2 mm long and the optical fiber stems are prevented from pointing directly to the incident source.
机译:>目的:使用蒙特卡洛模拟研究6 MV光子束在各种场大小下的塑料闪烁探测器(PSD)的响应。>方法:模拟了三个PSD: BC-400和BCF-12(分别连接到塑料芯光纤)和BC-400(连接到空心光纤)。 PSD响应的计算方式是:对于探测器相对于入射光束的垂直和平行方向,对于从10×10到0.5×0.5 cm 2 的视野,单位水剂量的探测器剂量。对CC01紧凑型腔室进行了类似的计算。在0.5×0.5 cm 2 光子束中计算离轴剂量分布,并将其与为CC01腔室计算的剂量分布和在没有任何检测器的水中计算的剂量分布进行比较。研究了小光子束中PSD响应的角度依赖性。>结果:在垂直方向上,随着场尺寸从10减小,BCF-12 PSD的响应仅变化了0.5%。 ×10到0.5×0.5 cm 2 ,而附着在塑料芯光纤上的BC-400 PSD的响应在最小场尺寸上变化超过3%,因为它的敏感区域更长。在平行方向上,对于相同范围的场大小,连接到塑料芯光纤的两个PSD的响应变化小于0.4%。对于附着在空心纤维上的PSD,两个方向的响应最多变化2%。>结论:这项工作中研究的所有PSD的响应只能有一个变化。如果敏感区域的长度不超过2 mm,并且阻止了光纤干直接指向入射源,则不管探测器的场大小和探测器的方向如何,都为1%–2%。

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