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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Purification of telluric acid for SNO+ neutrinoless double-beta decay search
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Purification of telluric acid for SNO+ neutrinoless double-beta decay search

机译:碲酸的纯化,用于SNO +中微子双β衰变搜索

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摘要

Tellurium-130 has the highest natural abundance of any double-beta decay isotopes. Recently it has been developed as a promising candidate for loading in liquid scintillator to explore the Majorana or Dirac nature of the neutrino through a search for neutrinoless double beta decay (Ovpp). To this end, procedures have been developed to transfer tellurium ions into the organic liquid by a water-based loading technology. However, traces of naturally occurring radioactivity and cosmic-ray induced isotopes introduced into the scintillator with tellurium could produce undesirable contaminations in the ~(130)Te Ovpp region. Measurements using various elemental spikes prepared from different chemical forms indicate that the uses of self-scavenging as well as acid and thermal recrystallization prior to the preparation of a tellurium-loaded liquid scintillator can deplete U and Th and several cosmic-activated isotopes from Te feedstock by a factor of 10~2-10~3 in a single pass. The process is also found to improve the optical transmission in the blue region, sensible to the photomultiplier tube, by removing traces of colored impurities. In addition to the scintillator-based experiments, this cleansing scheme has potential applications to the production of radiopure tellurium crystals for other rare-event experiments.
机译:碲130具有所有双β衰变同位素中最高的自然丰度。最近,它已被开发为一种有希望的候选物,可用于装载液体闪烁体,以通过寻找无中微子双β衰变(Ovpp)来探索中微子的Majorana或Dirac性质。为此,已经开发了通过基于水的加载技术将碲离子转移到有机液体中的程序。然而,痕量的自然放射性和由碲引入到闪烁体中的宇宙射线诱发的同位素可能会在〜(130)Te Ovpp区域产生不良污染。使用由不同化学形式制备的各种元素尖峰进行的测量表明,在制备负载碲的液体闪烁器之前使用自清除以及酸和热重结晶会耗尽U和Th以及Te原料中的几种宇宙活化同位素单程传递系数为10〜2-10〜3。还发现该方法通过去除痕量的有色杂质,改善了对光电倍增管敏感的蓝色区域的光传输。除了基于闪烁体的实验外,这种清洁方案还具有潜在的应用潜力,可用于生产其他罕见事件的放射性纯碲晶体。

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    Brookhaven National Laboratory, Upton, NY 11973, United States;

    Brookhaven National Laboratory, Upton, NY 11973, United States,US sponsored by the Office of Nuclear Physics, Office of High Energy Physics, Office of Science, U.S.D.O.E. under contract with Brookhaven National Laboratory;

    Brookhaven National Laboratory, Upton, NY 11973, United States,US sponsored by the Office of Nuclear Physics, Office of High Energy Physics, Office of Science, U.S.D.O.E. under contract with Brookhaven National Laboratory;

    Laurentian University, Sudbury, Canada;

    Brookhaven National Laboratory, Upton, NY 11973, United States;

    Brookhaven National Laboratory, Upton, NY 11973, United States,US sponsored by the Office of Nuclear Physics, Office of High Energy Physics, Office of Science, U.S.D.O.E. under contract with Brookhaven National Laboratory;

    Brookhaven National Laboratory, Upton, NY 11973, United States,US sponsored by the Office of Nuclear Physics, Office of High Energy Physics, Office of Science, U.S.D.O.E. under contract with Brookhaven National Laboratory;

    Queen University, Kingston, Canada;

    SNOLAB, Creighton Mine, Sudbury, Canada;

    Queen University, Kingston, Canada;

    University of Oxford, Oxford OX1 3RH, UK;

    Brookhaven National Laboratory, Upton, NY 11973, United States,US sponsored by the Office of Nuclear Physics, Office of High Energy Physics, Office of Science, U.S.D.O.E. under contract with Brookhaven National Laboratory;

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  • 正文语种 eng
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  • 关键词

    Tellurium; Purification; Metal-loaded liquid scintillator; Double beta decay; Neutrino;

    机译:碲;纯化;金属负载液体闪烁体;双Beta衰减;中微子;

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