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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Probing the Underground Science beyond the Standard Model with Ultra-Low Background Experiments at Sanford Lab/DUSEL
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Probing the Underground Science beyond the Standard Model with Ultra-Low Background Experiments at Sanford Lab/DUSEL

机译:通过Sanford Lab / DUSEL的超低背景实验探索超出标准模型的地下科学

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摘要

We show that an improved sensitivity on effective neutrino mass to the atmospheric neutrino mass scale with the next generation germanium-based double-beta decay experiment together with results from cosmology survey, θ13 measurements and neutrino oscillation experiments may be able to determine the absolute mass scale of the neutrino, and answer the question of the neutrino nature. To achieve such a sensitivity of 45 meV, the next generation germanium experiment must reduce background by a factor of 440 comparing to the existing results. The planned germanium experiment at the Deep Underground Science and Engineering Laboratory (DUSEL) in western South Dakota aims at achieving such a sensitivity. Sanford Lab supported by the state of South Dakota and a private donor, Mr. T. Denny Sanford, will be up and running within the next year to pave the way for the creation of DUSEL in five years.
机译:我们证明,利用下一代基于锗的双β衰变实验以及宇宙学调查,θ13测量和中微子振荡实验的结果,对有效中微子质量对大气中微子质量尺度的敏感性得到提高,也许可以确定绝对质量尺度中微子,并回答中微子性质的问题。为了达到这样的45 meV灵敏度,与现有结果相比,下一代锗实验必须将背景降低440倍。南达科他州西部的地下科学与工程实验室(DUSEL)计划进行的锗实验旨在实现这种敏感性。由南达科他州和私人捐助者T. Denny Sanford先生支持的Sanford实验室将在明年启动并运行,为五年后创建DUSEL铺平道路。

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