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Design and Performance of the ARIANNA HRA-3 Neutrino Detector Systems

机译:ARIANNA HRA-3中微子探测器系统的设计和性能

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We report on the development, installation, and operation of the first three of seven stations deployed at the ARIANNA site’s pilot Hexagonal Radio Array (HRA) in Antarctica. The primary goal of the ARIANNA project is to observe ultrahigh energy () cosmogenic neutrino signatures using a large array of autonomous stations, each 1 km apart on the surface of the Ross Ice Shelf. Sensing radio emissions of 100 MHz to 1 GHz, each station in the array contains RF antennas, amplifiers, 1.92 G-sample/s, 850 MHz bandwidth signal acquisition circuitry, pattern-matching trigger capabilities, an embedded CPU, 32 GB of solid-state data storage, and long-distance wireless and satellite communications. Power is provided by the sun and buffered in LiFePO storage batteries, and each station consumes an average of 7 W of power. Operation on solar power has resulted in 58% per calendar-year live-time. The station’s pattern-trigger capabilities reduce the trigger rates to a few milli-Hertz with 4-sigma voltage thresholds while retaining good stability and high efficiency for neutrino signals. The timing resolution of the station has been found to be 0.049 ns, RMS, and the angular precision of event reconstructions of signals bounced off of the sea–ice interface of the Ross Ice Shelf ranged from 0.14 to 0.17.
机译:我们报告了在南极洲ARIANNA站点的六角形无线电阵列(HRA)试点部署的七个站点中的前三个站点的开发,安装和运行情况。 ARIANNA项目的主要目标是使用大量自动站观测超高能()宇宙中微子信号,每个自动站在Ross冰架表面相距1公里。阵列中的每个站点可感应100 MHz至1 GHz的无线电发射,包含射频天线,放大器,1.92 G-sample / s,850 MHz带宽信号采集电路,码型匹配触发功能,嵌入式CPU,32 GB固态硬盘状态数据存储以及远程无线和卫星通信。太阳提供电力并缓冲在LiFePO蓄电池中,每个站平均消耗7瓦功率。太阳能发电已使每个日历年的实时运行时间提高了58%。该站的模式触发功能可将触发速率降低到几毫赫兹(具有4 sigma电压阈值),同时保持良好的稳定性和中微子信号的高效率。测站的定时分辨率为0.049ns,RMS,从罗斯冰架的海冰界面反射的信号事件重建的角度精度范围为0.14至0.17。

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