A likelihood method for measuring the ultrahigh energy cosmic ray composition
Abstract:
Air fluorescence detectors traditionally determine the dominant chemical composition of the ultrahigh energy cosmic ray flux by comparing the averaged slant depth of the shower maximum, Xmax, as a function of energy to the slant depths expected for various hypothesized primaries. In this paper, we present a method to make a direct measurement of the expected mean number of protons and iron by comparing the shapes of the expected Xmax distributions to the distribution for data. The advantages of this method includes the use of information of the full distribution and its ability to calculate a flux for various cosmic ray compositions. The same method can be expanded to marginalize uncertainties due to choice of spectra, hadronic models and atmospheric parameters. We demonstrate the technique with independent simulated data samples from a parent sample of protons and iron. We accurately pbkp_redict the …
Año de publicación:
2006
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Tipo de documento:
Other
Estado:
Acceso abierto
Áreas de conocimiento:
Áreas temáticas:
- Física
- Cuerpos y fenómenos celestes específicos
- Astronomía y ciencias afines