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Neutrino oscillation studies with IceCube-DeepCore

机译:中微子振荡研究与iceCube-Deepcore

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摘要

IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to search for astrophysical neutrinos with energies of PeV and higher. This goal has been achieved with the detection of the highest energy neutrinos to date. At the other end of the energy spectrum, the DeepCore extension lowers the energy threshold of the detector to approximately 10 GeV and opens the door for oscillation studies using atmospheric neutrinos. An analysis of the disappearance of these neutrinos has been completed, with the results produced being complementary with dedicated oscillation experiments. Following a review of the detector principle and performance, the method used to make these calculations, as well as the results, is detailed. Finally, the future prospects of IceCube-DeepCore and the next generation of neutrino experiments at the South Pole (IceCube-Gen2, specifically the PINGU sub-detector) are briefly discussed.
机译:ICecube是一个位于南极的Gigaton级中微子探测器,主要是旨在搜索具有PEV和更高的能量的天体物理中微子。通过检测到迄今为止最高能量的中微子的检测,实现了这一目标。在能谱的另一端,Deepcore延伸将检测器的能量阈值降低到大约10个GEV,并使用大气中微芽打开用于振荡研究的门。完成了这些中微域的消失的分析,结果产生了与专用振荡实验互补的结果。在审查探测器原理和性能之后,用于使这些计算的方法以及结果,详细介绍。最后,简要讨论了南极(ICecube-Gen2,特别是PuTu副检测器)的冰箱深度和下一代中微子实验的未来前景。

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