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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Electron Interaction with Gel Dosimeters: Effective Atomic Numbers for Collisional, Radiative and Total Interaction Processes
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Electron Interaction with Gel Dosimeters: Effective Atomic Numbers for Collisional, Radiative and Total Interaction Processes

机译:电子与凝胶剂量计的相互作用:碰撞,辐射和总相互作用过程的有效原子序数

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摘要

The effective atomic number is widely employed in radiation studies, particularly for the characterization of interaction processes in dosimeters, biological tissues and substitute materials. Gel dosimeters are unique in that they comprise both the phantom and dosimeter material. In this work, effective atomic numbers for total and partial electron interaction processes have been calculated for the first time for a Fricke gel dosimeter, five hypoxic and nine normally oxygenated polymer gel dosimeters. A range of biological materials are also presented for comparison. The spectrum of energies studied spans 10 keV to 100 MeV, over which the effective atomic number varies by 30%. The effective atomic numbers of gels match those of soft tissue closely over the full energy range studied; greater disparities exist at higher energies but are typically within 4%. (C) 2009 by Radiation Research Society
机译:有效原子序数广泛用于辐射研究中,尤其是用于表征剂量计,生物组织和替代材料中的相互作用过程。凝胶剂量计的独特之处在于它们同时包含体模和剂量计材料。在这项工作中,首次计算了Fricke凝胶剂量计,五种低氧和九种正常氧化的聚合物凝胶剂量计的全部和部分电子相互作用过程的有效原子序数。还提供了一系列生物材料用于比较。研究的能量范围为10 keV至100 MeV,有效原子序数变化30%。在研究的整个能量范围内,凝胶的有效原子序数与软组织的有效序数紧密匹配。较高的能量存在较大的差异,但通常在4%以内。 (C)2009年,放射研究学会

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