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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Demonstration of a solid deuterium source of ultra-cold neutrons
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Demonstration of a solid deuterium source of ultra-cold neutrons

机译:固态氘源的超冷中子论证

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Ultra-cold neutrons (UCN), neutrons with energies low enough to be confined by the Fermi potential in material bottles, are playing an increasing role in measurements of fundamental properties of the neutron. The ability to manipulate UCN with material guides and bottles, magnetic fields, and gravity can lead to experiments with lower systematic errors than have been obtained in experiments with cold neutron beams. The UCN densities provided by existing reactor sources limit these experiments. The promise of much higher densities from solid deuterium sources has led to proposed facilities coupled to both reactor and spallation neutron sources. In this Letter we report on the performance of a prototype spallation neutron-driven solid deuterium source. This source produced bottled UCN densities of 145 +/- 7 UCN/cm(3), about three times greater than the largest bottled UCN densities previously reported. These results indicate that a production UCN source with substantially higher densities should be possible. (C) 2004 Elsevier B.V. All rights reserved.
机译:超冷中子(UCN)的能量低到足以被材料瓶中的费米电势限制的中子,在测量中子的基本特性方面起着越来越重要的作用。与物料导向器和瓶子,磁场和重力一起操作UCN的能力可以使实验产生的系统误差比在冷中子束实验中获得的系统误差低。现有反应堆源提供的UCN密度限制了这些实验。来自固体氘源的更高密度的承诺已导致提议的设施与反应堆和散裂中子源同时使用。在这封信中,我们报告了散裂中子驱动的固体氘源原型的性能。该来源产生的瓶装UCN密度为145 +/- 7 UCN / cm(3),约为先前报道的最大瓶装UCN密度的三倍。这些结果表明,密度可能更高的生产UCN源应该是可行的。 (C)2004 Elsevier B.V.保留所有权利。

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