论文标题

$ν$ bdx-drift探测器中的fnal中微子梁线的岩石中微子梁。

Rock Neutron Backgrounds from FNAL Neutrino Beamlines in the $ν$BDX-DRIFT Detector

论文作者

Sierra, D. Aristizabal, Barrow, J. L., Dutta, B., Kim, D., Snowden-Ifft, D., Strigari, L., Wood, M. H.

论文摘要

$ν$ BDX-DRIFT合作旨在从FNAL的CE $ν$ ns或BSM Itsp《相互作用》中检测低能核电弯。由于岩石中子而引起的背景是一个重要问题。我们提出了一个基于〜\ texttt {genie}和〜\ texttt {geant4}模型,以估算地下围绕地下大厅周围岩壁中中微子核相互作用中产生的岩石中子的背景。该模型是针对在Numi Neutrino Beam中Minos Hall执行的2009美元$ COUPP实验的台式标记的,并且在实验结果与建模结果之间的一致性达到了30美元\%$ $。从该经过验证的模型工作,进行了类似的两阶段模拟,以估计几个梁线上$ν$ bdx-drift检测器中的后坐力背景。在使用〜\ texttt {geant4}的第一阶段中,用四种不同的中微子束配置使用了矩形地下大厅的墙壁,将中子置于矩形地下大厅的墙壁上。这些结果是由其他地下实验提出的,需要估计其岩石中子背景。对于$ν$ bdx-Drift,第二阶段从墙壁上传播中子,并记录了沉积在探测器周围的闪烁体否决权和核后坐力中的能量,并在检测器的基准体积中。来自$ν$ bdx-Drift检测器的定向信号允许其他背景减法。 $ 10 \,$ m $^3 \ cdot \,$ yr暴露于Numi低能(LE)梁配置的样本计算显示CE $ν$ NS信噪比为$ \ sim $ 2.5。

The $ν$BDX-DRIFT collaboration seeks to detect low-energy nuclear recoils from CE$ν$NS or BSM interactions at FNAL. Backgrounds due to rock neutrons are an important concern. We present a~\texttt{GENIE} and~\texttt{GEANT4} based model to estimate backgrounds from rock neutrons produced in neutrino-nucleus interactions within the rock walls surrounding the underground halls. This model was bench-marked against the $2009$ COUPP experiment performed in the MINOS hall in the NuMI neutrino beam, and agreement is found between experimental results and the modeled result to within $30\%$. Working from this validated model, a similar two-stage simulation was performed to estimate recoil backgrounds in the $ν$BDX-DRIFT detector across several beamlines. In the first stage utilizing~\texttt{GEANT4}, neutrons were tallied exiting the walls of a rectangular underground hall utilizing four different neutrino beam configurations. These results are presented for use by other underground experiments requiring estimations of their rock neutron backgrounds. For $ν$BDX-DRIFT, the second stage propagated neutrons from the walls and recorded energy deposited within a scintillator veto surrounding the detector and nuclear recoils within the detector's fiducial volume. The directional signal from the $ν$BDX-DRIFT detector allows additional background subtraction. A sample calculation of a $10\,$m$^3\cdot\,$yr exposure to the NuMI Low Energy (LE) beam configuration shows a CE$ν$NS signal-to-noise ratio of $\sim$2.5.

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