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High-Resolution Saturation Spectroscopy of Singly-Ionized Iron with a Pulsed UV Laser

机译:脉冲紫外激光对单电离铁的高分辨率饱和光谱研究

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摘要

We describe the design and realization of a scheme for UV laser spectroscopy of singly-ionized iron (Fe II) with very high resolution. A buffer-gas cooled laser ablation source is used to provide a room-temperature plasma with a high density of Fe II. We combine this with a scheme for pulsed-laser saturation spectroscopy to yield sub-Doppler resolution. In a demonstration experiment, we have examined an Fe II transition near 260 nm, attaining a linewidth of about 250 MHz. The method is well suited to measure transition frequencies and hyperfine structure. It could also be used to measure small isotope shifts in isotope-enriched samples.
机译:我们描述了具有非常高的分辨率的单电离铁(Fe II)的紫外激光光谱方案的设计和实现。缓冲气体冷却的激光烧蚀源用于提供具有高密度Fe II的室温等离子体。我们将此与脉冲激光饱和光谱的方案相结合,以产生亚多普勒分辨率。在演示实验中,我们检查了260 nm附近的Fe II跃迁,线宽约为250 MHz。该方法非常适合测量跃迁频率和超精细结构。它也可用于测量富含同位素的样品中的小同位素位移。

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