论文标题

未来的中微子实验

Future Neutrino Experiments

论文作者

Jamieson, Blair

论文摘要

中微子振荡的发现和pontecorvo maki nakagawa sakata矩阵中的大型混合参数已打开一个窗口,以搜索中微子中的CP侵略。在接下来的十年中,正在准备两个长基线中微子实验,沙丘和超级kamiokande。中国的JUNO实验将研究中微子基线的中微子振荡具有多个目标,包括通过使用物质效应对真空中微子振荡的干扰来确定中微子的质量顺序。短基线中微子振荡实验已经发现了数据中的异常情况,可以通过无菌中微子或新的核效应来解释。计划进行几项实验,包括Fermilab短基线计划,Prospect-II和Juno-Tao,以了解这些异常的来源。本文对这些令人兴奋的实验进行了简短的评论,这些实验将在未来十年内导致中微子物理学的新发现。

The discovery of neutrino oscillations and the large mixing parameters in the Pontecorvo Maki Nakagawa Sakata matrix has opened a window to search for CP-violation in neutrinos. Two long-baseline neutrino experiments, DUNE and Hyper-Kamiokande, are being prepared in the next decade to search for this CP-violation with intense beams of muon and anti-muon neutrinos. The JUNO experiment in China will study neutrino oscillations at medium baselines with several goals, including determining the mass ordering of the neutrinos by using the interference of matter effects with the vacuum neutrino oscillations. Short-baseline neutrino oscillation experiments have seen anomalies in their data that could either be explained by sterile neutrinos or new nuclear effects. Several experiments, including the Fermilab short baseline program, Prospect-II and JUNO-TAO are being planned to understand the source of these anomalies. This paper provides a short review of these exciting experiments that will lead to new discoveries in neutrino physics over the next decade.

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