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Gain calibration of a β/ γ coincidence spectrometer for automated radioxenon analysis

机译:用于自动放射性氙分析的β/γ符合谱仪的增益校准

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摘要

Detection and measurement of atmospheric radioxenon is an important component of international monitoring systems for nuclear weapons testing. Monitoring stations separate xenon from air and perform isotopic analysis of the radioxenon. In one such radioxenon measurement scheme, the isotopes of interest are identified by coincident spectroscopy of electrons and photons in a β/ γ coincidence spectrometer (BGCS). The β spectrometer is a plastic scintillator, manufactured as a cylindrical cell containing the separated xenon sample. This cell is surrounded by the NaI(Tl) γ spectrometer. We report here the development of a calibration process for the BGCS suitable for use in remote sampling systems. This procedure is based upon γ-ray Compton scattering, resulting in a true coincident signal in both detectors, generation of electrons over a wide energy range that matches the energy distribution of electrons from radioxenon decay, and a relative insensitivity to source location. In addition to gain calibration, this procedure determines the resolution of the β detector as a function of energy.
机译:大气放射性氙的检测和测量是核武器试验国际监测系统的重要组成部分。监测站将氙气与空气分开,并对放射性氙气进行同位素分析。在一种这样的放射性氙测量方案中,通过在β/γ符合光谱仪(BGCS)中对电子和光子进行符合光谱来识别感兴趣的同位素。 β光谱仪是一种塑料闪烁体,制造为包含分离出的氙气样品的圆柱形电池。该单元被NaI(Tl)γ光谱仪包围。我们在此报告适用于远程采样系统的BGCS校准过程的发展。此过程基于γ射线康普顿散射,在两个检测器中产生真正的重合信号,在宽能范围内生成电子,该能量范围与放射性氙衰变所产生的电子的能量分布相匹配,并对源位置相对不敏感。除增益校准外,此过程还根据能量确定β检测器的分辨率。

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