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Energy-sensitive ion- and cathode-luminescent radiation-beam monitors based on multilayer thin-film designs

机译:基于多层薄膜设计的能量敏感型离子和阴极发光辐射束监测仪

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摘要

A multilayer luminescent design concept is presented to develop energy-sensitive radiation-beam monitors on the basis of colorimetric analysis. Each luminescent layer within the stack consists of rare-earth-doped transparent oxides of optical quality and a characteristic luminescent emission under excitation with electron or ion beams. For a given type of particle beam (electron, protons, α particles, etc.), its penetration depth and therefore its energy loss at a particular buried layer within the multilayer stack depend on the energy of the initial beam. The intensity of the luminescent response of each layer is proportional to the energy deposited by the radiation beam within the layer, so characteristic color emission will be achieved if different phosphors are considered in the layers of the luminescent stack. Phosphor doping, emission efficiency, layer thickness, and multilayer structure design are key parameters relevant to achieving a broad colorimetric response. Two case examples are designed and fabricated to illustrate the capabilities of these new types of detector to evaluate the kinetic energy of either electron beams of a few kilo-electron volts or α particles of a few mega-electron volts.
机译:提出了一种多层发光设计概念,用于在比色分析的基础上开发对能量敏感的辐射束监测器。堆叠中的每个发光层由光学质量良好的稀土掺杂透明氧化物组成,并且在电子或离子束激发下具有特征性发光。对于给定类型的粒子束(电子,质子,α粒子等),其穿透深度以及因此在多层堆栈内特定埋层处的能量损耗取决于初始射束的能量。每层发光响应的强度与该层内辐射束沉积的能量成正比,因此,如果在发光堆栈的各层中考虑不同的磷光体,则将实现特征性的颜色发射。荧光粉掺杂,发射效率,层厚度和多层结构设计是与实现较宽比色响应相关的关键参数。设计并制作了两个案例,以说明这些新型检测器评估几千电子伏特的电子束或几兆电子伏特的α粒子的动能的能力。

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