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首页> 外文期刊>Analytical Sciences >Isotope-selective Microscale Imaging of Radioactive Cs without Isobaric Interferences Using Sputtered Neutral Mass Spectrometry with Two-step Resonant Ionization Employing Newly-developed Ti:Sapphire Lasers
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Isotope-selective Microscale Imaging of Radioactive Cs without Isobaric Interferences Using Sputtered Neutral Mass Spectrometry with Two-step Resonant Ionization Employing Newly-developed Ti:Sapphire Lasers

机译:使用新开发的Ti:蓝宝石激光器,采用两步共振电离溅射中性质谱法,对不具有等压干扰的放射性Cs进行同位素选择性微观成像。

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摘要

The characterization of radionuclides in Fukushima is important to determine their origins and current state in the environment. Radionuclides exist as fine particles and are mixed with other constituents. A measurement method with both micro-imaging capability and highly selective element detection is necessary to analyze these particles. We developed such an imaging technique using a time-of-flight secondary ion mass spectrometry and wavelength-tunable Ti:Sapphire lasers for the resonance ionization of target elements without mass interference. This is called resonant laser ionization sputtered neutral mass spectrometry. The instrument has a high lateral resolution and a higher ionization selectivity using two-step resonance excitation of Cs with two lasers at different wavelengths. Optimization of the wavelength for resonance ionization using a Cs compound was performed, and a real environmental particle containing radioactive Cs was analyzed. Isotope images of three kinds of Cs were successfully obtained without interfere from Ba isotopes for the first time.
机译:福岛县放射性核素的表征对于确定其起源和环境现状非常重要。放射性核素以细颗粒形式存在,并与其他成分混合。同时具有微成像能力和高选择性元素检测的测量方法对于分析这些粒子是必需的。我们使用飞行时间二次离子质谱仪和波长可调的Ti:Sapphire激光器开发了这种成像技术,以使目标元素发生共振电离而不会产生质量干扰。这称为共振激光电离溅射中性质谱。该仪器使用两个波长不同的激光对Cs进行两步共振激发,具有较高的横向分辨率和较高的电离选择性。使用Cs化合物对共振电离的波长进行了优化,并分析了含有放射性Cs的真实环境粒子。成功地获得了三种Cs的同位素图像,这是首次不受Ba同位素的干扰。

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