论文标题
关于轻型无菌中微子的新线索:对全球拟合效果具有阻尼效果的模型的偏好
New Clues About Light Sterile Neutrinos: Preference for Models with Damping Effects in Global Fits
论文作者
论文摘要
本文报告了全球短基线中微子数据的全球拟合与涉及光无菌中微子的振荡模型。在常用的3+1平面波模型中,数据集之间有一个众所周知的4.9 $σ$张力,对中微子的外观与消失敏感。我们发现,对反应器数据集的振荡预测潮湿的模型,尤其是在低能方面,大大改善了拟合并减少张力。我们考虑两个这样的情况。第一种方案引入了量子机械波袋效应,该效应将反应器实验中的源大小解释为3+1模型。我们发现,包括$Δχ^2/$ dof $ = 61.1/4 $($7.1σ$改善)的3 $ν$模型的整体效果的包含大大提高了整体拟合,而最佳拟合$Δm^2 = 1.4 $ uev $^2 $^2 $^2 $ and wavepappacket长度为67 fm。内部张力减少到3.4 $σ$。如果仅适合反应器数据,则Wavepacket首选长度为91 FM(99 \%Cl的$> 20 $ fm)。第二款模型引入了涉及无菌风味的振荡,并允许最重,主要是无菌质量状态的腐烂,$ν_4$。该模型引入了类似于波袋效应的阻尼项,但在所有实验中。与三中性拟合度相比,它具有$Δχ^2/$ dof $ = 60.6/4 $($7σ$改进),首选$Δm^2 = 1.4 $ ev $^2 $ and decay $γ= 0.35 $ ev $^$^2 $。内部张力减少到3.7 $σ$。 多年来,已经观察到反应堆事件发生率具有偏离预测的结构。与5 MEV观察到的预测相比,社区讨论的重点是过剩;但是,其他偏差是显而易见的。该结构具有$ l $依赖性,而受阻尼模型非常适合。在提出新物理学之前,我们敦促对可能导致这种$ l $依赖性的系统效应进行更仔细的检查。
This article reports global fits of short-baseline neutrino data to oscillation models involving light sterile neutrinos. In the commonly-used 3+1 plane wave model, there is a well-known 4.9$σ$ tension between data sets sensitive to appearance versus disappearance of neutrinos. We find that models that damp the oscillation prediction for the reactor data sets, especially at low energy, substantially improve the fits and reduce the tension. We consider two such scenarios. The first scenario introduces the quantum mechanical wavepacket effect that accounts for the source size in reactor experiments into the 3+1 model. We find that inclusion of the wavepacket effect greatly improves the overall fit compared to a 3$ν$ model by $Δχ^2/$DOF$=61.1/4$ ($7.1σ$ improvement) with best-fit $Δm^2=1.4$ eV$^2$ and wavepacket length of 67fm. The internal tension is reduced to 3.4$σ$. If reactor-data only is fit, then the wavepacket preferred length is 91 fm ($>20$ fm at 99\% CL). The second model introduces oscillations involving sterile flavor and allows the decay of the heaviest, mostly sterile mass state, $ν_4$. This model introduces a damping term similar to the wavepacket effect, but across all experiments. Compared to a three-neutrino fit, this has a $Δχ^2/$DOF$=60.6/4$ ($7σ$ improvement) with preferred $Δm^2=1.4$ eV$^2$ and decay $Γ= 0.35$ eV$^2$. The internal tension is reduced to 3.7$σ$. For many years, the reactor event rates have been observed to have structure that deviates from prediction. Community discussion has focused on an excess compared to prediction observed at 5 MeV; however, other deviations are apparent. This structure has $L$ dependence that is well-fit by the damped models. Before assuming this points to new physics, we urge closer examination of systematic effects that could lead to this $L$ dependence.