论文标题
对NSI的未来反应堆和长基线中微子实验的敏感性
Sensitivities of future reactor and long-baseline neutrino experiments to NSI
论文作者
论文摘要
我们研究了下一代长基线中微子实验沙丘和T2HK的潜力,以及即将进行的反应堆实验Juno限制非标准相互作用(NSI)参数。 Juno将提供最精确的太阳中微子振荡参数的测量,并确定中微子质量排序。我们研究Juno的结果如何与长基线中微子实验(例如沙丘和T2HK)的结果相结合可以帮助确定振荡参数并限制NSI参数。我们在NSI参数空间中介绍了排除区域,假设标准模型(SM)为零假设,$ε_{αβ} $。我们进一步探讨了NSI参数与CP侵略阶段之间的相关性。
We investigate the potential of the next generation long-baseline neutrino experiments DUNE and T2HK as well as the upcoming reactor experiment JUNO to constrain Non-Standard Interaction (NSI) parameters. JUNO is going to provide the most precise measurements of solar neutrino oscillation parameters as well as determining the neutrino mass ordering. We study how the results of JUNO combined with those of long-baseline neutrino experiments such as DUNE and T2HK can help to determine oscillation parameters and to constrain NSI parameters. We present excluded regions in NSI parameter space, $ε_{αβ}$ assuming Standard Model (SM) as the null hypothesis. We further explore the correlations between the NSI parameters and CP-violation phase.