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A thin layer fiber-coupled luminescence dosimeter based on Al _2O_3:C (Conference Paper)

机译:基于Al _2O_3:C的薄层光纤耦合发光剂量计(会议论文)

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摘要

In this paper we present a fiber-coupled luminescent Al_2O _3:C dosimeter probe with high spatial resolution (0.1 mm). It is based on thin layers of Al_2O_3:C crystal powder and a UV-cured acrylate monomer composition. The fabrication of the thin layers is described in detail. No influence of the introduced polymer host matrix on the dosimetric properties was observed. Depth-dose measurements with the new detectors in a 142.66 MeV proton and 270.55 MeV/u carbon ion beam are presented as example applications. We used an RL protocol with saturated crystals allowing for time-effective measurements without sensitivity corrections. For protons, a relative luminescence efficiency ηHCP of 0.715 ± 0.014 was found in the Bragg peak. For carbon ions, a value of 0.498 ± 0.001 was found in the entrance channel, 0.205 ± 0.015 in the Bragg peak, and a mean of 0.413 ± 0.050 in the tail region. The mean range of the protons measured with this new detector deviated by less than 1% from the reference value. For both ion types, the stem effect contributed less than 0.8% of the RL signal.
机译:在本文中,我们提出了一种具有高空间分辨率(0.1毫米)的光纤耦合发光Al_2O _3:C剂量计探头。它基于Al_2O_3:C晶体粉末的薄层和UV固化的丙烯酸酯单体组合物。详细描述了薄层的制造。没有观察到引入的聚合物主体基质对剂量特性的影响。介绍了使用新型检测器在142.66 MeV质子和270.55 MeV / u碳离子束中进行深度剂量测量的示例应用。我们将RL协议与饱和晶体一起使用,可以进行时间有效的测量,而无需进行灵敏度校正。对于质子,在布拉格峰中发现相对发光效率ηHCP为0.715±0.014。对于碳离子,在入口通道中发现值为0.498±0.001,在布拉格峰中发现为0.205±0.015,在尾部区域中的平均值为0.413±0.050。用该新检测器测得的质子平均范围与参考值的偏差小于1%。对于两种离子类型,干效应贡献的RL信号均不到0.8%。

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