论文标题
部分可观测时空混沌系统的无模型预测
Future Advances in Photon-Based Neutrino Detectors: A SNOWMASS White Paper
论文作者
论文摘要
我们在这里讨论新的,为未来基于光子的中微子探测器的技术。这些技术几乎触及了此类探测器的各个方面:新的闪烁材料,新的加载同位素方法,新的光子传感器和收集器,新的模拟和分析方法以及新的前端电子设备和DAQ Ideas。特别令人感兴趣的技术是在混合Cherenkov/闪烁探测器中实现广泛的物理程序,例如较慢的荧光,水性液体闪烁体和光子的光谱分选。还讨论了几种新的大规模检测器思想,包括诸如Theia,Artemis和通用的慢荧光探测器等混合探测器,以及用于仪器基于光子的探测器的截然不同的滑动和Liquido方法。还讨论了包括Annie,EOS和NUDOT在内的未来探测器的示威者计划。
We discuss here new, enabling technologies for future photon-based neutrino detectors. These technologies touch nearly every aspect of such detectors: new scintillating materials, new methods of loading isotopes, new photon sensors and collectors, new approaches to simulation and analysis, and new front-end electronics and DAQ ideas. Of particular interest are technologies that enable broad physics programs in hybrid Cherenkov/scintillation detectors, such as slow fluors, water-based liquid scintillator, and spectral sorting of photons. Several new large-scale detector ideas are also discussed, including hybrid detectors like Theia, ArTEMIS, and generic slow-fluor detectors, as well as the very different SLIPs and LiquidO approaches to instrumenting photon-based detectors. A program of demonstrators for future detectors, including ANNIE, Eos, and NuDOT are also discussed.