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A Novel Technique for Raman Analysis of Highly Radioactive Samples Using Any Standard Micro-Raman Spectrometer

机译:使用任何标准微拉曼光谱仪进行高放射性样品拉曼分析的新技术

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摘要

A novel approach for the Raman measurement of nuclear materials is reported in this paper. It consists of the enclosure of the radioactive sample in a tight capsule that isolates the material from the atmosphere. The capsule can optionally be filled with a chosen gas pressurized up to 20 bars. The micro-Raman measurement is performed through an optical-grade quartz window. This technique permits accurate Raman measurements with no need for the spectrometer to be enclosed in an alpha-tight containment. It therefore allows the use of all options of the Raman spectrometer, like multi-wavelength laser excitation, different polarizations, and single or triple spectrometer modes. Some examples of measurements are shown and discussed. First, some spectral features of a highly radioactive americium oxide sample (AmO2) are presented. Then, we report the Raman spectra of neptunium oxide (NpO2) samples, the interpretation of which is greatly improved by employing three different excitation wavelengths, 17O doping, and a triple mode configuration to measure the anti-stokes Raman lines. This last feature also allows the estimation of the sample surface temperature. Finally, data that were measured on a sample from Chernobyl lava, where phases are identified by Raman mapping, are shown.
机译:本文报道了一种新型的拉曼核材料测量方法。它由放射性样品的密封容器组成,该密封容器将材料与大气隔离开。胶囊可以可选地填充有选定的气体,压力可达20巴。显微拉曼测量是通过光学级石英窗执行的。该技术无需将光谱仪封装在紧紧的α密闭容器中即可进行精确的拉曼测量。因此,它允许使用拉曼光谱仪的所有选项,例如多波长激光激发,不同的偏振以及单或三光谱仪模式。显示并讨论了一些测量示例。首先,介绍了高放射性氧化meric样品(AmO2)的一些光谱特征。然后,我们报告了氧化oxide(NpO2)样品的拉曼光谱,通过采用三种不同的激发波长, 17 O掺杂和三重模式配置来测量抗氧化性,极大地改善了样品的解释。抚摸拉曼线条。这最后一个特征还允许估计样品表面温度。最后,显示了在切尔诺贝利火山岩样品上测量的数据,其中通过拉曼测绘确定了相。

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