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Study of a C VD diamond detector for absorbed dose measurement in photon beams with small field sizes

机译:C VD金刚石探测器用于小场尺寸光子束吸收剂量测量的研究

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A new diamond detector to perform absorbed-dose-to-water measurement in radiotherapy photon beams with small field sizes is being developed in the framework of the EURAMET/EC FP7 project "External Beam Cancer Therapy". An objective of the project is to obtain detectors capable of ensuring traceability of absorbed dose measurements in radiotherapy photon beams with field size down to 1 cm x 1 cm. To this end the CVD diamond detectors up to now developed were found not adequate. The present project requires detectors with high spatial resolution, good stability and low energy dependence. Diamond detectors were chosen for their high spatial resolution and good tissue equivalence (Z = 6). The detector studied in this work is based on a single crystal CVD diamond with dimensions 3 mm x 3 mm x 0.5 mm on which 0.2 μm electrodes were thermally evaporated. Particular care was addressed to ensure the tissue-equivalence of the detector by using appropriate materials. A thorough analysis of the priming procedure, stability and signal reproducibil-ity was carried out in a Co-60 gamma beam at dose rates in the range from 0.3 Gy min~(-1) to 1.38 Gy min~(-1). Moreover the detector response was studied by Monte Carlo calculations as a function both of the beam quality, from Co-60 to 10 MV photon beams, and field size, from 10 cm x 10 cm to 1 cm x 1 cm. The perturbation due to the non-water equivalence of electrodes was also determined by Monte Carlo simulations.
机译:在EURAMET / EC FP7项目“外部束癌治疗”的框架内,正在开发一种新的金刚石检测器,用于在具有小视野尺寸的放射治疗光子束中进行吸收剂量-水的测量。该项目的目的是获得能够确保在放射治疗光子束中吸收剂量测量值可追溯至1 cm x 1 cm的探测器。为此,发现迄今开发的CVD金刚石检测器是不合适的。本项目需要具有高空间分辨率,良好稳定性和低能量依赖性的探测器。选择钻石探测器是因为它们具有高空间分辨率和良好的组织等效性(Z = 6)。在这项工作中研究的检测器基于尺寸为3 mm x 3 mm x 0.5 mm的单晶CVD金刚石,在其上热蒸发了0.2μm电极。解决了特别注意事项,以通过使用适当的材料来确保检测器的组织等效性。在Co-60伽马射线束中以0.3 Gy min〜(-1)至1.38 Gy min〜(-1)的剂量率对启动过程,稳定性和信号再现性进行了全面分析。此外,通过蒙特卡洛计算研究了探测器的响应,作为从Co-60到10 MV光子束的光束质量和从10 cm x 10 cm到1 cm x 1 cm的场尺寸的函数。还通过蒙特卡洛模拟确定了由于电极的非水当量引起的扰动。

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