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Energy and Flux Measurements of Ultra-High Energy Cosmic Rays Observed During the First ANITA Flight

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

The first flight of the Antarctic Impulsive Transient Antenna (ANITA) experiment recorded 16 radio signals that were emitted by cosmic-ray induced air showers. For 14 of these events, this radiation was reflected from the ice. The dominant contribution to the radiation from the deflection of positrons and electrons in the geomagnetic field, which is beamed in the direction of motion of the air shower. This radiation is reflected from the ice and subsequently detected by the ANITA experiment at a flight altitude of 36km. In this paper, we estimate the energy of the 14 individual events and find that the mean energy of the cosmic-ray sample is 2.9 EeV. By simulating the ANITA flight, we calculate its exposure for ultra-high energy cosmic rays. We estimate for the first time the cosmic-ray flux derived only from radio observations. In addition, we find that the Monte Carlo simulation of the ANITA data set is in agreement with the total number of observed events and with the properties of those events.

fields

astro-ph.IM 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

POEMMA-Balloon with Radio: A multi-messenger, multi-detector balloon payload

astro-ph.IM · 2026-01-27 · unverdicted · novelty 4.0

PBR is a proposed balloon experiment combining optical and radio detectors to validate space-based UHECR fluorescence detection and perform the first simultaneous Cherenkov-radio observations of high-altitude air showers above the cosmic-ray knee.

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Showing 1 of 1 citing paper.

  • POEMMA-Balloon with Radio: A multi-messenger, multi-detector balloon payload astro-ph.IM · 2026-01-27 · unverdicted · none · ref 36 · internal anchor

    PBR is a proposed balloon experiment combining optical and radio detectors to validate space-based UHECR fluorescence detection and perform the first simultaneous Cherenkov-radio observations of high-altitude air showers above the cosmic-ray knee.