稀有气体混合物的相对闪烁效率

J.A. Northrop, Judith C. Gursky
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引用次数: 37

摘要

本文研究了α-粒子停止后0.5 μ秒内稀有气体混合物中闪烁光的相对量。在一个封闭的循环系统中,一个波纹泵和一个热铀炉保持了气体的纯度。在光电倍增管和闪烁体的壁上涂有一层二苯基二苯乙烯,作为一次紫外线辐射的波长移位器。给出了氙、氪、氩、氖和氦的不同比例二元组合的效率数据。它们表明,在含有少量较重气体和大部分较轻气体的混合物中,光有一个特征性的大下降。这些结果可以定性地解释为稀有气体分子离子的形成。10% Xe-90% He混合物的大光输出可能有助于利用He3(n,p)H3反应构建高效中子谱仪。
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Relative scintillation efficiencies of noble gas mixtures

An investigation has been made of the relative amounts of scintillation light emitted from mixtures of the noble gases during the 0.5 μsec interval following the stopping of an α-particle. A bellows pump and a hot uranium furnace in a closed circulation system maintained gas purity. A diphenyl stilbene coating on the photomultiplier tube and the walls of the scintillation volume acted as a wavelength shifter for the primary ultraviolet radiation. Data on the efficiency of various proportions of binary combinations of xenon, krypton, argon, neon, and helium are presented. They show a characteristic large drop in the light for mixtures containing a small proportion of the heavier gas in a major fraction of the ligher. These results may be qualitatively interpreted in terms of noble gas molecular ion formation. The large light output of the 10% Xe-90% He mixture might be useful in constructing a neutron spectrometer of high efficiency using the He3(n,p)H3 reaction.

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