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Hybrid interferometric/dispersive atomic spectroscopy of laser-induced uranium plasma

机译:激光诱导铀等离子体的混合干涉/色散原子光谱

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摘要

An established optical emission spectroscopy technique, laser-induced breakdown spectroscopy (LIES), holds promise for detection and rapid analysis of elements relevant for nuclear safeguards, nonproliferation, and nuclear power, including the measurement of isotope ratios. One such important application of LIBS is the measurement of uranium enrichment (U-235/U-238), which requires high spectral resolution (e.g., 25 pm for the 424.4 nm U II line). High-resolution dispersive spectrometers necessary for such measurements are typically bulky and expensive. We demonstrate the use of an alternative measurement approach, which is based on an inexpensive and compact Fabry-Perot etalon integrated with a low to moderate resolution Czerny-Turner spectrometer, to achieve the resolution needed for isotope selectivity of LIES of uranium in ambient air. Spectral line widths of similar to 10 pm have been measured at a center wavelength 424.437 nm, clearly discriminating the natural from the highly enriched uranium. (C) 2015 Elsevier B.V. All rights reserved.
机译:一种成熟的光学发射光谱技术,即激光诱导击穿光谱法(LIES),有望检测和快速分析与核保障,防扩散和核电有关的元素,包括同位素比的测量。 LIBS的这种重要应用之一是铀浓缩的测量(U-235 / U-238),这需要高光谱分辨率(例如,对于424.4 nm U II谱线为25 pm)。这种测量所需的高分辨率色散光谱仪通常笨重且昂贵。我们演示了一种替代测量方法的使用,该方法基于廉价且紧凑的Fabry-Perot标准具和低至中等分辨率的Czerny-Turner光谱仪,可实现环境空气中LIES铀同位素选择性所需的分辨率。在中心波长424.437 nm处测得的光谱线宽接近10 pm,从而明显区分了天然铀和高浓缩铀。 (C)2015 Elsevier B.V.保留所有权利。

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