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Radio detection of air showers with the ARIANNA experiment on the Ross Ice Shelf
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Radio detection of air showers with the ARIANNA experiment on the Ross Ice Shelf
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The ARIANNA hexagonal radio array (HRA) is an experiment in its pilot phase designed to detect cosmogenic neutrinos of energies above 10^16 eV. The most neutrino-like background stems from the radio emission of air showers. This article reports on dedicated efforts of simulating and detecting the signals of cosmic rays. A description of the fully radio self-triggered data-set, the properties of the detected air shower signals in the frequency range of \unit[100-500]{MHz} and the consequences for neutrino detection are given. 38 air shower signals are identified by their distinct waveform characteristics, are in good agreement with simulations and their signals provide evidence that neutrino-induced radio signals will be distinguishable with high efficiency in ARIANNA. The cosmic ray flux at a mean energy of $6.5^{+1.2}_{-1.0}\times10^{17}$ eV is measured to be $1.1^{+1.0}_{-0.7}\times10^{-16}$ eV$^{-1}$km$^{-2}$sr$^{-1}$yr$^{-1}$ and one five-fold coincident event is used to illustrate the capabilities of the ARIANNA detector to reconstruct arrival direction and energy of air showers.
Forward citations
Cited by 3 Pith papers
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Simulation of combined radio and radar signals at the Radar Echo Telescope for Cosmic Rays
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Complex Analysis of Askaryan Radiation: UHECR Reconstruction
An analytical Askaryan-plus-channel model matches 13 ARA UHECR candidate waveforms with correlations 0.69–0.86 and recovers an E-field consistent with prior ARA results.
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Complex Analysis of Askaryan Radiation: UHECR Reconstruction
An analytical model of Askaryan radiation plus detector response is shown to match 13 ARA UHECR candidate waveforms with correlations 0.69-0.86.
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