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A Rotationally Symmetric Lateral Distribution Function for Radio Emission from Inclined Air Showers
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Radio detection of inclined air showers is currently receiving great attention. To exploit the potential, a suitable event reconstruction needs to be developed. The first step in this direction is the development of a model for the lateral distribution of the radio signals, which in the case of inclined air showers exhibits asymmetries due to "early-late" effects in addition to the usual asymmetries from the superposition of charge-excess and geomagnetic emission. We present a model which corrects for all asymmetries and successfully describes the lateral distribution of the energy fluence with a rotationally symmetric function. This gives access to the radiation energy as a measure of the energy of the cosmic-ray primary, and is also sensitive to the depth of the shower maximum.
Forward citations
Cited by 2 Pith papers
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Symmetrizing the signal distribution of radio emission from inclined air showers
A symmetrization procedure for radio signals of inclined air showers reconstructs electromagnetic energy with a spread below 3 percent on simulated events.
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Signal Model and Energy Reconstruction for the Radio Detection of Inclined Air Showers in the 50-200 MHz Frequency Band
The authors extend a 30-80 MHz air-shower radio emission model to 50-200 MHz and report simulation-based electromagnetic energy resolutions below 5% for ideal arrays and below 10% for sparse, noisy arrays.
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