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| Reihe | Springer Theses |
|---|---|
| ISBN | 9783319875484 |
| Sprache | Englisch |
| Erscheinungsdatum | 18.08.2018 |
| Genre | Physik, Astronomie/Astronomie |
| Verlag | Springer International Publishing |
| Lieferzeit | Lieferbar in 6 Werktagen |
| Herstellerangaben | Anzeigen Springer Nature Customer Service Center GmbH Europaplatz 3 | DE-69115 Heidelberg ProductSafety@springernature.com |
This thesis offers the first laboratory validation of microscopic simulations of radio emission from particle showers, including a detailed description of the simulation study. It presents a potential future avenue for resolving the mass composition of cosmic rays via radio detection of air showers.
Particle showers are created from cascading interactions when high-energy particles collide with matter, e.g. with air in the case of cosmic radiation, or with a particle detector in the case of experiments at CERN. These showers can consist of billions of particles, mostly electrons, positrons and photons. They emit radio waves when the absorbing medium is in a magnetic field, and this radio emission can be used as a novel means of detecting and drawing inferences on the shower and the primary particle. The new method is currently being established in cosmic ray research, where large antenna arrays may soon replace or complement traditional particle detectors.
In thi
| Reihe | Springer Theses |
|---|---|
| ISBN | 9783319875484 |
| Sprache | Englisch |
| Erscheinungsdatum | 18.08.2018 |
| Genre | Physik, Astronomie/Astronomie |
| Verlag | Springer International Publishing |
| Lieferzeit | Lieferbar in 6 Werktagen |
| Herstellerangaben | Anzeigen Springer Nature Customer Service Center GmbH Europaplatz 3 | DE-69115 Heidelberg ProductSafety@springernature.com |
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