论文标题
随着数据和新的背景研究的增加,更新的迷你中微子振荡结果
Updated MiniBooNE Neutrino Oscillation Results with Increased Data and New Background Studies
论文作者
论文摘要
Fermilab的迷你蛋白实验报告的总超过$ 638.0 \ pm 132.8 $,来自数据样本的类似于电子的事件($4.8σ$),相对应$ 18.75 \ times 10^{20} $ protons-on-target在中子模式中的质子 - protons-on-target在中源模式中,这是46 \%的数据},$ 11 \%的$ 11} $ 11} $ 11 i;抗肿瘤模式下的质子质子。额外的统计数据允许几项研究解决有关过剩源的问题。首先,我们提供了二维图块的可见能量和余弦,以外向发出的角度,可以为事件多余的模型提供有价值的输入。其次,我们测试过量是否可能来自从$π^0 $衰减以两种模型独立的方式衰减的外部事件或光子进入检测器的光子。光束时序信息表明,几乎所有的过量都与在检测器中相互作用的中微子及时及时。半径分布表明,多余的分布是在整个体积中分布的,而信托体积的削减更加削减了多余的意义。我们得出的结论是,基于进入和退出光子的事件过剩的模型是不利的。
The MiniBooNE experiment at Fermilab reports a total excess of $638.0 \pm 132.8$ electron-like events ($4.8 σ$) from a data sample corresponding to $18.75 \times 10^{20}$ protons-on-target in neutrino mode, which is a 46\% increase in the data sample with respect to previously published results, and $11.27 \times 10^{20}$ protons-on-target in antineutrino mode. The additional statistics allow several studies to address questions on the source of the excess. First, we provide two-dimensional plots in visible energy and cosine of the angle of the outgoing lepton, which can provide valuable input to models for the event excess. Second, we test whether the excess may arise from photons that enter the detector from external events or photons exiting the detector from $π^0$ decays in two model independent ways. Beam timing information shows that almost all of the excess is in time with neutrinos that interact in the detector. The radius distribution shows that the excess is distributed throughout the volume, while tighter cuts on the fiducal volume increase the significance of the excess. We conclude that models of the event excess based on entering and exiting photons are disfavored.