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Measurement of the cosmic-ray energy spectrum above $10^{16}$ eV with the LOFAR Radboud Air Shower Array
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abstract
The energy reconstruction of extensive air showers measured with the LOFAR Radboud Air Shower Array (LORA) is presented in detail. LORA is a particle detector array located in the center of the LOFAR radio telescope in the Netherlands. The aim of this work is to provide an accurate and independent energy measurement for the air showers measured through their radio signal with the LOFAR antennas. The energy reconstruction is performed using a parameterized relation between the measured shower size and the cosmic-ray energy obtained from air shower simulations. In order to illustrate the capabilities of LORA, the all-particle cosmic-ray energy spectrum has been reconstructed, assuming that cosmic rays are composed only of protons or iron nuclei in the energy range between $\sim2\times10^{16}$ and $2\times10^{18}$ eV. The results are compatible with literature values and a changing mass composition in the transition region from a galactic to an extragalactic origin of cosmic rays.
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Cited by 2 Pith papers
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Information Field Theory with JAX infers Air Shower Electric Currents from Antenna Signal Traces
An IFT+JAX Bayesian pipeline infers the space-time current-density field of an air shower from synthetic antenna signals, reproducing the main structure of the simulated shower.
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A LOFAR-style reconstruction of cosmic-ray air showers with SKA-Low
Applying LOFAR's reconstruction method to full SKA-Low simulations yields 5 to 8 g/cm2 precision on the air-shower maximum between 10^16.6 and 10^18 eV, with beamforming extending the range down to 10^16 eV.
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