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通过极化原子束的磁偏转实现激光同位素浓缩

朱熙文

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通过极化原子束的磁偏转实现激光同位素浓缩

朱熙文

LASER ISOTOPE ENRICHMENT VIA MAGNETIC DEFLECTION OF OPTICALLY POLARIZED ATOMIC BEAM

ZHU XI-WEN
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  • 本文描述一种通过极化原子束的磁偏转实现同位素和同质异能素浓缩的新方法。用具有不同频率和偏振的激光进行选择性光抽运,使束中两同位素的原子分别反向高度极化,然后使这些反向极化的原子在经过自旋选态磁铁后沿不同方向偏转,从而实现同位素浓缩。推算了此法的选择性和产量,与其他方法相比,讨论了其优缺点和可能的应用前景。提出了用锂或钾进行实验的方案。
    We describe a novel method to enrich isotopes and isomers via magnetic deflection of optically polarized atomic beam. High electronic polarization with opposite signs for atoms of both isotopes respectively is achieved by selective optical pumping using lasers with different frequencies and polarizations and then the isotopes are enriched by deflecting the oppositely polarized isotopes along different directions by the inhomo-geneous magnetic field in the spin selective magnet. Separation selectivity and throughput are evaluated and the advantages, disadvantages and prospects of possible application of the present method are discussed in comparison with other existing methods. Experimental scheme with lithium or potassium is suggested.
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出版历程
  • 收稿日期:  1983-12-26
  • 刊出日期:  2005-03-28

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