论文标题
反应堆实验中光中微子相互作用的非标准中微子相互作用
Non-standard neutrino interactions in light mediator models at reactor experiments
论文作者
论文摘要
与其他中微子来源相比,基于核反应堆的实验的巨大抗中性通量使我们有能力在中微子与中微子的非标准性相互作用方面得出更强的界限,与光标量/载体介体介导的电子。在中微子能量左右,与太阳能通量相比,$〜kev反应堆抗中性通量至少要大的数量级。与原子结构细节相关的检测器材料的原子和晶体形式因子在该能量尺度上变得相关,因为动量转移会很小。由光标量/矢量介导介导的非标准中性电子相互作用在许多低尺度模型中自然出现。我们还提出了一个具有轻标量调解人的新模型。在这里,我们研究了具有低阈值GE和SI探测器的基于反应堆的中微子实验中此类低规模模型的参数空间,并通过在执行$χ^2 $ - 分析的情况下找到预计的敏感性来探测/排除相关参数空间的前景。我们发现,能够区分电子后坐力和核后坐力信号的检测器将基于反应堆实验中放置的$ 5 $ 〜EV等阈值,将能够与先前探索的区域相比,在参数空间中探测更大的区域。具有$ 10 $〜kg-yr和1 MW反应堆抗内径通量的GE(SI)检测器将能够探测标量和矢量介体的群体低于1 kev for耦合产品$ \ sqrt {g_νg_e} $ \ sim $ \ sim $ $ $ $ $ $ $ $ 1 \ $ $ $ $ $ $ $ $ $ $ $和7.5 {-5.5(9.5) $ 1 \ times 10^{ - 7}〜(8 \ times 10^{ - 8})$。
Compared to other neutrino sources, the huge anti-neutrino fluxes at nuclear reactor based experiments empower us to derive stronger bounds on non-standard interactions of neutrinos with electrons mediated by light scalar/vector mediators. At neutrino energy around $200$~keV reactor anti-neutrino flux is at least an order of magnitude larger compared to the solar flux. The atomic and crystal form factors of the detector materials related to the details of the atomic structure becomes relevant at this energy scale as the momentum transfers would be small. Non-standard neutrino-electron interaction mediated by light scalar/vector mediator arises naturally in many low-scale models. We also propose one such new model with a light scalar mediator. Here, we investigate the parameter space of such low-scale models in reactor based neutrino experiments with low threshold Ge and Si detectors, and find the prospect of probing/ruling out the relevant parameter space by finding the projected sensitivity at $90 \%$ confidence level by performing a $χ^2$-analysis. We find that a detector capable of discriminating between electron recoil and nuclear recoil signal down to a very low threshold such as $5$~eV placed in reactor based experiment would be able to probe a larger region in parameter space compared to the previously explored region. A Ge (Si) detector with $10$~kg-yr exposure and 1 MW reactor anti-neutrino flux would be able to probe the scalar and vector mediators with masses below 1 keV for coupling products $\sqrt{g_νg_e}$ $\sim$ $1 \times 10^{-6}~(9.5 \times 10^{-7})$ and $1\times 10^{-7} ~(8\times 10^{-8})$, respectively.