Protons of energies up to 10**20 eV can be subject to significant deflection and energy dependent time delay in lage scale extragalactic or halo magnetic fields of strengths comparable to current upper limits. By performing 3-dimensional Monte Carlo simulations of nucleon propagation, we show how observations of arrival direction and time distributions can be used to measure the structure and strength of large-scale magnetic fields, and constrain the nature of the source of ultra-high energy cosmic rays
The ultrahigh-energy cosmic-ray (UHECR) anisotropies discovered by the Pierre Auger Observatory prov...
International audienceWe simulate the propagation of cosmic rays at ultra-high energies, ≳10^18 eV, ...
The ultrahigh-energy cosmic-ray (UHECR) anisotropies discovered by the Pierre Auger Observatory prov...
We present a detailed Monte Carlo study coupled to a likelihood analysis of the potential of next ge...
If ultra-high-energy cosmic rays (UHECRs) originate from extragalactic sources, understanding the pr...
The existence of cosmic ray particles up to the ultra-high energy limit (> 10^20 eV) is now beyond a...
We present detailed numerical simulations and analytical approximations of the propagation of nucleo...
We simulate the propagation of cosmic rays at ultra-high energies, ≳1018 eV, in models of extragalac...
We simulate the propagation of cosmic rays at ultra-high energies, ≳1018 eV, in models of extragalac...
We simulate the propagation of cosmic rays at ultra-high energies, ≳1018 eV, in models of extragalac...
The interpretation of observed sky distributions of ultra high energy cosmic rays may be affected no...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
The energy density of the Ultra High Energy Cosmic Rays (UHECR) in the Universe is a very important ...
We present numerical simulations for energy spectra and angular distributions of nucleons above 10^{...
The ultrahigh-energy cosmic-ray (UHECR) anisotropies discovered by the Pierre Auger Observatory prov...
International audienceWe simulate the propagation of cosmic rays at ultra-high energies, ≳10^18 eV, ...
The ultrahigh-energy cosmic-ray (UHECR) anisotropies discovered by the Pierre Auger Observatory prov...
We present a detailed Monte Carlo study coupled to a likelihood analysis of the potential of next ge...
If ultra-high-energy cosmic rays (UHECRs) originate from extragalactic sources, understanding the pr...
The existence of cosmic ray particles up to the ultra-high energy limit (> 10^20 eV) is now beyond a...
We present detailed numerical simulations and analytical approximations of the propagation of nucleo...
We simulate the propagation of cosmic rays at ultra-high energies, ≳1018 eV, in models of extragalac...
We simulate the propagation of cosmic rays at ultra-high energies, ≳1018 eV, in models of extragalac...
We simulate the propagation of cosmic rays at ultra-high energies, ≳1018 eV, in models of extragalac...
The interpretation of observed sky distributions of ultra high energy cosmic rays may be affected no...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
The energy density of the Ultra High Energy Cosmic Rays (UHECR) in the Universe is a very important ...
We present numerical simulations for energy spectra and angular distributions of nucleons above 10^{...
The ultrahigh-energy cosmic-ray (UHECR) anisotropies discovered by the Pierre Auger Observatory prov...
International audienceWe simulate the propagation of cosmic rays at ultra-high energies, ≳10^18 eV, ...
The ultrahigh-energy cosmic-ray (UHECR) anisotropies discovered by the Pierre Auger Observatory prov...