论文标题

大型液体氩气投影室中MEV规模重建功能的好处

Benefits of MeV-scale reconstruction capabilities in large liquid argon time projection chambers

论文作者

Castiglioni, W., Foreman, W., Lepetic, I., Littlejohn, B. R., Malaker, M., Mastbaum, A.

论文摘要

我们使用大量液体氩气中粒子相互作用的真实级别的蒙特卡洛模拟,我们证明了通过重建拓扑紧凑和孤立的低能特征或“ Blips”在大型液体氩时间投影室(LARTPC)事件中实现的物理能力。这些特征主要是由沉积电离能的光子相互作用的电子产物产生的。 LARTPC的BLIP识别能力是通过其尺寸,位置分辨率精度和低能阈值的独特组合来启用的。我们表明,在LARTPC物理学分析中重建的BLIP的考虑可能会导致中微子和新物理相互作用的热量法以及从MEV到GEV量表的最终状态颗粒的量热法。 BLIP活性分析还显示可以歧视相互作用通道和最终粒子类型。除了证明量热法和歧视中的这些增长外,还讨论了BLIP重建能力和物理结果的一些局限性。

Using truth-level Monte Carlo simulations of particle interactions in a large volume of liquid argon, we demonstrate physics capabilities enabled by reconstruction of topologically compact and isolated low-energy features, or `blips,' in large liquid argon time projection chamber (LArTPC) events. These features are mostly produced by electron products of photon interactions depositing ionization energy. The blip identification capability of the LArTPC is enabled by its unique combination of size, position resolution precision, and low energy thresholds. We show that consideration of reconstructed blips in LArTPC physics analyses can result in substantial improvements in calorimetry for neutrino and new physics interactions and for final-state particles ranging in energy from the MeV to the GeV scale. Blip activity analysis is also shown to enable discrimination between interaction channels and final-state particle types. In addition to demonstrating these gains in calorimetry and discrimination, some limitations of blip reconstruction capabilities and physics outcomes are also discussed.

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