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首页> 外文期刊>Physical Review C: Nuclear Physics >High-resolution 100Mo(3He,t)100Tc charge-exchange experiment and the impact on double-β decays and neutrino charged-current reactions
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High-resolution 100Mo(3He,t)100Tc charge-exchange experiment and the impact on double-β decays and neutrino charged-current reactions

机译:高分辨率100Mo(3He,t)100Tc电荷交换实验及其对双β衰变和中微子带电反应的影响

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摘要

The Gamow-Teller (GT) strength distribution has been investigated in a high-resolution (3He,t) chargeexchangenexperiment on the double-beta (ββ) decaying nucleus 100Mo. The experiment was carried out at thenOsaka University Research Center for Nuclear Physics (RCNP) with a 420 MeV incident 3He beam and thenGrand Raiden magnetic spectrometer. A final-state energy resolution of 33 keV was achieved. It was found thatnnearly the entire low-energy (up to ≈ 4 MeV) GT− strength is concentrated in the ground-state transition ton100Tc, which is interpreted as a result of the particular neutron and proton sub-shell occupancies. The impact onnthe matrix elements for the two-neutrino double-beta (2νββ) decay and the use of 100Mo as a neutrino detectionnmaterial is discussed.
机译:已在双β(ββ)衰变核100Mo的高分辨率(3He,t)电荷交换实验中研究了Gamow-Teller(GT)强度分布。该实验是在当时的大阪大学核物理研究中心(RCNP)上用420 MeV入射3He光束进行的,然后是Grand Raiden磁谱仪进行的。最终状态的能量分辨率达到了33 keV。我们发现,几乎所有的低能量(高达≈4 MeV)GT-强度都集中在基态跃迁ton100Tc上,这被解释为特定的中子和质子子壳占据的结果。讨论了两个中微子双β(2νββ)衰变对基质元素的影响以及100Mo作为中微子检测材料的用途。

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