Commissariat à l'Energie Atomique et aux Energies Alternatives, Centre de Saclay, IRFU, Gif-sur-Yvette, France.
Phys Rev Lett. 2011 Nov 11;107(20):201801. doi: 10.1103/PhysRevLett.107.201801. Epub 2011 Nov 7.
Several observed anomalies in neutrino oscillation data can be explained by a hypothetical fourth neutrino separated from the three standard neutrinos by a squared mass difference of a few eV(2). We show that this hypothesis can be tested with a PBq (ten kilocurie scale) (144)Ce or (106)Ru antineutrino beta source deployed at the center of a large low background liquid scintillator detector. In particular, the compact size of such a source could yield an energy-dependent oscillating pattern in event spatial distribution that would unambiguously determine neutrino mass differences and mixing angles.
中微子振荡数据中观测到的几个异常现象可以用一个假设的第四种中微子来解释,这种中微子与三种标准中微子通过一个几 eV(2)的平方质量差分离。我们表明,这种假设可以通过在一个大型低背景液体闪烁探测器的中心部署一个 PBq(十万居里规模)(144)Ce 或(106)Ru 反中微子β源来进行测试。特别是,这种源的紧凑尺寸可以在事件空间分布中产生一个与能量相关的振荡模式,这将明确确定中微子质量差和混合角。