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Detection of UV light based on chemically stimulated luminescence of crystal phosphors

机译:基于晶体荧光粉的化学激发发光检测紫外线

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摘要

High-efficiency accommodation of heterogeneous-reaction energy via an electronic channel and the possibility of using this effect to design an ionizing (UV) radiation detector based on chemically stimulated luminescence have been investigated. Preliminary irradiation of a ZnS sample by UV light is found to cause a luminescence flash under subsequent exposure of the sample surface to a flux of hydrogen atoms. The flash intensity depends on the UV excitation level and increases by several orders of magnitude in comparison with an unirradiated sample. It is shown that a new method for detecting UV light using chemically stimulated luminescence of crystal phosphors accumulating light yield can be developed based on this effect.
机译:已经研究了通过电子通道高效适应异质反应能量以及利用这种效应设计基于化学激发发光的电离(UV)辐射探测器的可能性。发现在紫外光下对ZnS样品的初步辐照会在随后样品表面暴露于氢原子通量的情况下引起发光闪光。闪光强度取决于紫外线激发水平,与未辐照样品相比,闪光强度增加了几个数量级。结果表明,基于这种效果,可以开发出一种新的方法,该方法可以利用化学发光激发积累光产率的晶体磷光体来检测紫外线。

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