论文标题
方向性中微子在大地下lartpcs搜索银河系中心的暗物质
Directional Neutrino Searches for Galactic Center Dark Matter at Large Underground LArTPCs
论文作者
论文摘要
我们研究了一个基于地下LARTPC的大型中微子检测器对银河系中心中微子中中微子的暗物质的敏感性。这样的检测器可以在中微子散射事件中解决电子方向,从而推断有关单个中微子事件的源方向的信息。我们考虑了该方向信息将提供的预期实验灵敏度的改进。即使没有定向信息,我们也发现类似沙丘的LARTPC检测器能够对暗物质an灭的中微子设定限制,以使其具有竞争力或超过当前实验范围的30 MEV以上的暗物质质量。尽管目前针对低能电子的角度分辨率不足以使灵敏度显着提高,但这些技术可能会受益于对算法的改进以及新颖的3D电荷成像方法提供的其他空间信息。我们考虑了这种增强对电子方向分辨率的影响,并发现可以区分电子散射事件与充电中微子相互作用的区别,而在质量范围内限制了太阳中微子背景中的暗物质净化,在这种情况下,使用方向信息$ 40可以在$ 40的$ 40上占用$ 40,在这种情况下,太阳中微子背景占主导地位($ \ \ \ \ simssim 15 $ 15 $)可以显着改善。
We investigate the sensitivity of a large, underground LArTPC-based neutrino detector to dark matter in the Galactic Center annihilating into neutrinos. Such a detector could have the ability to resolve the direction of the electron in a neutrino scattering event, and thus to infer information about the source direction for individual neutrino events. We consider the improvements on the expected experimental sensitivity that this directional information would provide. Even without directional information, we find a DUNE-like LArTPC detector is capable of setting limits on dark matter annihilation to neutrinos for dark matter masses above 30 MeV that are competitive with or exceed current experimental reach. While currently-demonstrated angular resolution for low-energy electrons is insufficient to allow any significant increase in sensitivity, these techniques could benefit from improvements to algorithms and the additional spatial information provided by novel 3D charge imaging approaches. We consider the impact of such enhancements to the resolution for electron directionality, and find that where electron-scattering events can be distinguished from charged-current neutrino interactions, limits on dark matter annihilation in the mass range where solar neutrino backgrounds dominate ($\lesssim 15$ MeV) can be significantly improved using directional information, and would be competitive with existing limits using $40$ kton$\times$year of exposure.