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Advanced beta-ray-induced X-ray spectrometry for non-destructive measurement of tritium retained in fusion related materials

机译:先进的β射线诱导X射线光谱法,用于融合相关材料中保留的retained的非破坏性测量

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A new beta-ray-induced X-ray measurement system equipped with a silicon drift detector, which was named "Advanced-BIXS", was constructed to study in detail retention behavior of surface tritium by measurements of low energy X-rays below 1 keV such as C(K-alpha) and O(K-alpha) as well as high energy X-rays induced by beta-rays from tritium. In this study, basic performance of the present system has been examined using various tritium-containing samples. It was seen that energy linearity, energy resolution and sensitivity were quite enough for measurements of low energy X-rays induced by beta-rays. Intensity of characteristic X-rays emitted from the surface and/or bulk of a tritium-containing sample was lowered by argon used as a working gas of the Advanced-BIXS. Pressure dependence of transmittance of C(Ka) and Fe(K-alpha) was examined as examples of low and high energy X-rays, and it was able to represent by using the mass absorption coefficient in argon. It was concluded, therefore, that the present system has high potentiality for nondestructive measurements of tritium retained in surface layers and/or bulk of fusion related materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:构造了一种新的由β射线诱导的配备有硅漂移检测器的X射线测量系统,称为“ Advanced-BIXS”,以通过测量低于1 keV的低能X射线来详细研究表面tri的保留行为。例如C(K-alpha)和O(K-alpha)以及由beta产生的β射线诱导的高能X射线。在这项研究中,已经使用各种含performance样品检查了本系统的基本性能。可以看出,能量线性,能量分辨率和灵敏度足以测量β射线引起的低能X射线。通过使用氩作为Advanced-BIXS的工作气体,可以降低从含tri样品的表面和/或主体发出的特征X射线的强度。作为低能量和高能量X射线的例子,研究了C(Ka)和Fe(K-α)的透射率的压力依赖性,并且可以通过使用氩中的质量吸收系数来表示。因此,可以得出结论,本系统对于无损测量保留在表面层和/或大部分熔合相关材料中的tri具有很高的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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