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在超高剂量率电子束中对 TL 和 OSL 探测器的研究。

Investigation of TL and OSL detectors in ultra-high dose rate electron beams.

机构信息

Department of Radiation Safety and Security, Paul Scherrer Institute, Villigen PSI, Switzerland.

Department of Physics, ETH Zürich, Zürich, Switzerland.

出版信息

Phys Med Biol. 2023 Jul 11;68(14). doi: 10.1088/1361-6560/acdfb2.

Abstract

This work aims at investigating the response of various thermally stimulated luminescence detectors (TLDs) and optically stimulated luminescence detectors (OSLDs) for dosimetry of ultra-high dose rate electron beams. The study was driven by the challenges of dosimetry at ultra-high dose rates and the importance of dosimetry for FLASH radiotherapy and radiobiology experiments.Three types of TLDs (LiF:Mg,Ti; LiF:Mg,Cu,P; CaF:Tm) and one type of OSLD (AlO:C) were irradiated in a 15 MeV electron beam with instantaneous dose rates in the (1-324) kGy srange. Reference dosimetry was carried out with an integrating current transformer, which was calibrated in absorbed dose to water against a reference ionization chamber. Additionally, dose rate independent BeO OSLDs were employed as a reference. Beam non-uniformity was addressed using a matrix of TLDs/OSLDs.The investigated TLDs were shown to be dose rate independent within the experimental uncertainties, which take into account the uncertainty of the dosimetry protocol and the irradiation uncertainty. The relative deviation between the TLDs and the reference dose was lower than 4 % for all dose rates. A decreasing response with the dose rate was observed for AlO:C OSLDs, but still within 10 % from the reference dose.The precision of the investigated luminescence detectors make them suitable for dosimetry of ultra-high dose rate electron beams. Specifically, the dose rate independence of the TLDs can support the investigation of the beam uniformity as a function of the dose rate, which is one of the challenges of the employed beam. AlO:C OSLDs provided high precision measurements, but the decreasing response with the dose rate needs to be confirmed by additional experiments.

摘要

本工作旨在研究各种热激励发光探测器(TLD)和光激励发光探测器(OSLD)在超高剂量率电子束剂量测定中的响应。该研究的驱动力是超高剂量率下的剂量测定挑战,以及 FLASH 放射治疗和放射生物学实验中剂量测定的重要性。

三种类型的 TLD(LiF:Mg,Ti;LiF:Mg,Cu,P;CaF:Tm)和一种类型的 OSLD(AlO:C)在 15 MeV 电子束中辐照,瞬时剂量率在(1-324)kGy s 范围内。参考剂量测定采用积分电流互感器进行,该互感器在吸收剂量到水中与参考电离室进行校准。此外,还使用剂量率独立的 BeO OSLD 作为参考。使用 TLD/OSLD 矩阵解决了束不均匀性问题。

在所研究的 TLD 中,在实验不确定度范围内表现出剂量率独立性,该不确定度考虑了剂量测定方案和辐照不确定性。在所有剂量率下,TLD 与参考剂量的相对偏差均低于 4%。AlO:C OSLD 的响应随剂量率降低,但仍在参考剂量的 10%以内。

所研究的发光探测器的精度使它们适用于超高剂量率电子束的剂量测定。具体而言,TLD 的剂量率独立性可以支持作为剂量率函数的束均匀性的研究,这是所使用束的挑战之一。AlO:C OSLD 提供了高精度的测量,但剂量率降低的响应需要通过额外的实验来确认。

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