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Design and initial performance of the Askaryan Radio Array prototype EeV neutrino detector at the South Pole

机译:南极的Askaryan无线电阵列原型EeV中微子探测器的设计和初始性能

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摘要

We report on studies of the viability and sensitivity of the Askaryan Radio Array (ARA), a new initiative to develop a Teraton-scale ultra-high energy neutrino detector in deep, radio-transparent ice near Amundsen-Scott station at the South Pole. An initial prototype ARA detector system was installed in January 2011, and has been operating continuously since then. We describe measurements of the background radio noise levels, the radio clarity of the ice, and the estimated sensitivity of the planned ARA array given these results, based on the first five months of operation. Anthropogenic radio interference in the vicinity of the South Pole currently leads to a few-percent loss of data, but no overall effect on the background noise levels, which are dominated by the thermal noise floor of the cold polar ice, and galactic noise at lower frequencies. We have also successfully detected signals originating from a 2.5 km deep impulse generator at a distance of over 3 km from our prototype detector, confirming prior estimates of kilometer-scale attenuation lengths for cold polar ice. These are also the first such measurements for propagation over such large slant distances in ice. Based on these data, ARA-37, the ~200 km ~2 array now in its initial construction phase, will achieve the highest sensitivity of any planned or existing neutrino detector in the 10 ~(16)-10 ~(19) eV energy range.
机译:我们报告了对Askaryan Radio Array(ARA)的可行性和敏感性的研究,这是在南极Amundsen-Scott站附近的深层,透明的冰中开发Teraton级超高能中微子探测器的一项新计划。最初的ARA探测器原型系统于2011年1月安装,此后一直持续运行。我们根据运行的前五个月,介绍了背景无线电噪声电平,冰的无线电清晰度以及计划的ARA阵列的估计灵敏度的测量结果。目前,南极附近的人为无线电干扰导致数据丢失百分之几,但对背景噪音水平没有整体影响,而背景噪音水平主要由冷极冰的热本底噪声和较低的银河噪声主导频率。我们还成功地检测到2.5公里深的脉冲发生器发出的信号,该信号发生器距我们的原型探测器超过3公里,从而证实了先前对冷极冰的千米尺度衰减长度的估计。这也是在冰上如此大的倾斜距离上传播时的首次此类测量。根据这些数据,ARA-37(目前处于初始建造阶段的〜200 km〜2阵列)将在10〜(16)-10〜(19)eV能量下实现任何计划中或现有中微子探测器的最高灵敏度。范围。

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