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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >A gas-jet apparatus for high-resolution laser spectroscopy on the heaviest elements at SHIP
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A gas-jet apparatus for high-resolution laser spectroscopy on the heaviest elements at SHIP

机译:SHIP上最重元素的高分辨率激光光谱的气体喷射设备

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摘要

Laser spectroscopy enables the determination of fundamental atomic and nuclear properties with high precision. In view of the low production rates of the heaviest elements, a high total efficiency is a crucial requirement for any experimental setup to be used in on-line experiments. The setup requires the use of gas stopping techniques to slow down the radionuclides of interest. In previous studies laser spectroscopy was performed inside a gas-filled stopping cell with a limited spectral resolution of a few GHz. Collisional broadening inside stopping cells ultimately limits the precision of laser spectroscopic studies and hampers in particular hyperfine spectroscopy. The spectral linewidth is reduced by an order of magnitude when the laser spectroscopy is performed in a well-collimated gas jet formed by the exit nozzle of a gas stopping cell. In addition, the exposure of the jet to high-repetition rate laser light which saturates the optical transitions allows maintaining a high total efficiency. Here, we present a new setup dedicated to laser spectroscopy of the heaviest elements with an improved resolution, which is presendy under construction. This setup combines the efficient filament neutralization demonstrated for nobelium with the improved resolution of in-gas-jet spectroscopy.
机译:激光光谱仪可以高精度确定基本的原子和核性质。鉴于最重元素的生产率较低,因此对于在线实验中使用的任何实验装置而言,高总效率是至关重要的要求。该装置需要使用气体阻止技术来减慢感兴趣的放射性核素。在以前的研究中,激光光谱法是在充满气体的停止室中进行的,其光谱分辨率只有几GHz。停止细胞内部的碰撞扩大最终限制了激光光谱研究的精度,并阻碍了特别是超精细光谱的研究。当在由气体停止单元的出口喷嘴形成的良好准直的气体射流中进行激光光谱分析时,光谱线宽减小了一个数量级。另外,将射流暴露于使光学跃迁饱和的高重复频率的激光中,可以保持较高的总效率。在这里,我们提出了一种新的装置,该装置专用于具有改进分辨率的最重元素的激光光谱分析,这是在建中。该设置将针对for证明的高效灯丝中和与改进的气相色谱光谱法相结合。

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  • 作者单位

    GSI Helmholtzzentrum fuer Schwerionenforschung Planckstraβe 1 64291 Darmstadt Germany Helmholtz Institut Mainz Staudingerweg 18 55128 Mainz Germany;

    GSI Helmholtzzentrum fuer Schwerionenforschung Planckstraβe 1 64291 Darmstadt Germany Helmholtz Institut Mainz Staudingerweg 18 55128 Mainz Germany Institut fuer Kernchemie Johannes Gutenberg-Umvenitaet Mainz Fritz-Straβmann-Weg 2 55128 Mainz Germany;

    GSI Helmholtzzentrum fuer Schwerionenforschung Planckstraβe 1 64291 Darmstadt Germany Technische Universitat Darmstadt Schloβgartenstraβe 7 64289 Darmstadt Germany;

    KU Leuven Instituut voor Kern- en Stralingsfysica Celesajnenlaan 200D B-3001 Leuven Belgium;

    Helmholtz Institut Mainz Staudingerweg 18 55128 Mainz Germany Institut fuer Kernchemie Johannes Gutenberg-Umvenitaet Mainz Fritz-Straβmann-Weg 2 55128 Mainz Germany;

    Institut fuer Kernchemie Johannes Gutenberg-Umvenitaet Mainz Fritz-Straβmann-Weg 2 55128 Mainz Germany;

    Technische Universitat Darmstadt Schloβgartenstraβe 7 64289 Darmstadt Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Resonance ionization spectroscopy; Gas stopping cell; Gas jet; Nobelium;

    机译:共振电离光谱;阻气室;气体喷射bel;

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