High Energy Neutrino Astronomy: Status and Perspectives

C. Spiering
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引用次数: 5

Abstract

The year 2008 has witnessed remarkable steps in developing high energy neutrino telescopes. IceCube at the South Pole has been deployed with 40 of its planned 80 strings and reached half a cubic kilometer instrumented volume, in the Mediterranean Sea the “first‐stage” neutrino telescope ANTARES has been completed and takes data with 12 strings. The next years will be key years for opening the neutrino window to the high energy universe. IceCube is presently entering a region with realistic discovery potential. Early discoveries (or non‐discoveries) with IceCube will strongly influence the design and the estimated discovery chances of the Northern equivalent KM3NeT. Following theoretical estimates, cubic kilometer telescopes may just scratch the regions of discovery. Therefore detectors presently planned should reach sensitivities substantially beyond those of IceCube.
高能中微子天文学:现状与展望
2008年,高能中微子望远镜的研制取得了显著进展。南极的冰立方已经部署了计划中的80根弦中的40根,仪器体积达到了半立方公里,在地中海的“第一阶段”中微子望远镜ANTARES已经完成,并使用12根弦收集数据。未来几年将是打开高能宇宙中微子窗口的关键年份。冰立方目前正在进入一个具有实际发现潜力的地区。冰立方的早期发现(或未发现)将强烈影响北方等效KM3NeT的设计和估计发现机会。根据理论估计,立方千米望远镜可能只会触及发现的区域。因此,目前计划的探测器的灵敏度应该大大超过冰立方。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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