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Acoustic Neutrino Detection in Ice: Past, Present, and Future

机译:冰中的声学中微子检测:过去,现在和未来

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Acoustic neutrino detection is a promising technique to instrument the large volumes required to measure the small expected flux of ultra-high energy cosmogenic neutrinos. Using ice as detection medium allows for coincident detection of neutrino interactions with acoustic sensors, radio antennas and optical light sensors with the benefit of cross calibration possibilities or independent measurements of the same event. We review the past development of the field and discuss its current status and challenges. Results from site exploration studies, mainly by the South Pole Acoustic Test Setup which has been co-deployed with the IceCube neutrino telescope at South Pole, and current physics results are presented. Current ideas for the design, calibration, and deployment of acoustic sensors for new projects are shown. The possible role of the acoustic technique in future in-ice neutrino detectors is discussed.
机译:声学中微子检测是一种有望的技术,可以介绍测量超高能量美容中微生中微子酶的小预期通量所需的大容量。使用冰作为检测介质允许与声学传感器,无线电天线和光学光传感器的中微子相互作用重合检测,其具有交叉校准可能性或相同事件的独立测量的益处。我们审查了该领域的过去的发展,并讨论了其现状和挑战。现场勘探研究的结果,主要由南极声学测试设置,该研究已经与南极的ICecube Neutrino望远镜共同部署,并提出了当前物理结果。显示了新项目的设计,校准和部署声学传感器的当前想法。讨论了声学技术在未来冰中的中微子探测器中的可能作用。

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