The shape of the primary cosmic-ray spectrum at very high energies and its connection with the spectra of high-energy γ-rays and muons in the atmosphere have been discussed. Using a simple formulation for calculating secondary spectra arising from power-law primary spectra cutoff at arbitrary points, it is shown that a specific two-component model for the primary spectrum explains the present observations on the high-energy γ-ray spectrum at all altitudes and the muon spectrum at sea level, without invoking any change in the character of the interactions at high energies. Such a spectrum is also consistent with air-shower observations
The break observed in the electron shower size power law spectrum of Extensive Air Showers (EAS) at ...
We have observed atmospheric gamma rays from 30GeV to 8TeV, using emulsion chambers at balloon altit...
The cosmic ray primary composition in the energy range between 1015 and 1016 eV, i.e., around the ``...
The recent observations of muon charge ratio up to about 10 TeV and of atmospheric neutrinos up to e...
We present evidence for a dependence of the average deep underground muon energies on shower size in...
The Sydney University Giant Air-shower Recorder (SUGAR) measured the energy spectrum of ultra-high-e...
Spectra of local muon densities in high-energy extensive air-showers (EAS) are presented as signatur...
A combined analysis of the energy spectrum and the chemical composition of ultra-high energy cosmic ...
Multimuon data from the MACRO experiment at Gran Sasso have been analyzed using a new method, which ...
The cosmic ray primary composition in the energy range between 10^15 and 10^16 eV, i.e., around the ...
Since their discovery, great progress has been achieved in the field of cosmic ray physics particula...
The cosmic ray primary composition in the energy range between 1015 and 1016 eV, i.e., around the ‘‘...
Calculations of the longitudinal development of air showers initiated by protons and heavy primaries...
Multimuon data from the MACRO experiment at Gran Sasso have been analyzed using a new method, which ...
KASCADE-Grande is an extensive air shower experiment devoted to the study of cosmic rays in the 1016...
The break observed in the electron shower size power law spectrum of Extensive Air Showers (EAS) at ...
We have observed atmospheric gamma rays from 30GeV to 8TeV, using emulsion chambers at balloon altit...
The cosmic ray primary composition in the energy range between 1015 and 1016 eV, i.e., around the ``...
The recent observations of muon charge ratio up to about 10 TeV and of atmospheric neutrinos up to e...
We present evidence for a dependence of the average deep underground muon energies on shower size in...
The Sydney University Giant Air-shower Recorder (SUGAR) measured the energy spectrum of ultra-high-e...
Spectra of local muon densities in high-energy extensive air-showers (EAS) are presented as signatur...
A combined analysis of the energy spectrum and the chemical composition of ultra-high energy cosmic ...
Multimuon data from the MACRO experiment at Gran Sasso have been analyzed using a new method, which ...
The cosmic ray primary composition in the energy range between 10^15 and 10^16 eV, i.e., around the ...
Since their discovery, great progress has been achieved in the field of cosmic ray physics particula...
The cosmic ray primary composition in the energy range between 1015 and 1016 eV, i.e., around the ‘‘...
Calculations of the longitudinal development of air showers initiated by protons and heavy primaries...
Multimuon data from the MACRO experiment at Gran Sasso have been analyzed using a new method, which ...
KASCADE-Grande is an extensive air shower experiment devoted to the study of cosmic rays in the 1016...
The break observed in the electron shower size power law spectrum of Extensive Air Showers (EAS) at ...
We have observed atmospheric gamma rays from 30GeV to 8TeV, using emulsion chambers at balloon altit...
The cosmic ray primary composition in the energy range between 1015 and 1016 eV, i.e., around the ``...