REAS3: Monte Carlo simulations of radio emission from cosmic ray air showers using an "end-point" formalism
arXiv:1010.5343 · doi:10.1016/j.astropartphys.2010.10.012
Abstract
In recent years, the freely available Monte Carlo code REAS for modelling radio emission from cosmic ray air showers has evolved to include the full complexity of air shower physics. However, it turned out that in REAS2 and all other time-domain models which calculate the radio emission by superposing the radiation of the single air shower electrons and positrons, the calculation of the emission contributions was not fully consistent. In this article, we present a revised implementation in REAS3, which incorporates the missing radio emission due to the variation of the number of charged particles during the air shower evolution using an "end-point formalism". With the inclusion of these emission contributions, the structure of the simulated radio pulses changes from unipolar to bipolar, and the azimuthal emission pattern becomes nearly symmetric. Remaining asymmetries can be explained by radio emission due to the variation of the net charge excess in air showers, which is automatically taken into account in the new implementation. REAS3 constitutes the first self-consistent time-domain implementation based on single particle emission taking the full complexity of air shower physics into account, and is freely available for all interested users.
18 pages, 13 figures accepted by Astroparticle Physics (2010)
References in corpus (5)
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Cited by in corpus (13)
- Radio detection of Cosmic-Ray Air Showers and High-Energy Neutrinos
- Antennas for the Detection of Radio Emission Pulses from Cosmic-Ray induced Air Showers at the Pierre Auger Observatory
- Reconstruction of the energy and depth of maximum of cosmic-ray air-showers from LOPES radio measurements
- Experimental evidence for the sensitivity of the air-shower radio signal to the longitudinal shower development
- The wavefront of the radio signal emitted by cosmic ray air showers
- The air shower maximum probed by Cherenkov effects from radio emission
- Final results of the LOPES radio interferometer for cosmic-ray air showers
- Refractive displacement of the radio-emission footprint of inclined air showers simulated with CoREAS
- Framework and Tools for the Simulation and Analysis of the Radio Emission from Air Showers at IceCube
- Simulating radio emission from particle cascades with CORSIKA 8
- Numerical Simulation of Radio Signal from Extended Air Showers
- Towards a fast and precise forward model for air shower radio simulation
- Validation of straight-line signal propagation for radio signal of very inclined cosmic ray air showers