The origin of the most energetic cosmic ray particles is one of the most important open problems in astrophysics. Despite a big experimental effort done in the past years, the sources of these very energeticparticles remain unidentified. Therefore, their distribution on the Universe and even their space density are still unknown. It has been shown that different spatial configurations of the sources lead to different energy spectra and composition profiles (in the case of sources injecting heavy nuclei) at Earth. These ensemble fluctuations are more important at the highest energies, because only nearby sources, which are necessarily few, can contribute to the flux observed at Earth. This is due to the interaction of the cosmic rays with th...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
We study the influence of the random part of the galactic magnetic field on the propagation of ultra...
Abstract. It is established, that the main contribution into dynamics of galactic cosmic ray intensi...
Abstract: The flux of ultra-high energy (UHE) cosmic rays (CRs) depends on the cosmic distribution o...
We briefly review sources of cosmic rays, their composition and spectra as well as their propagation...
We briefly review sources of cosmic rays, their composition and spectra as well as their propagation...
We obtain the angular distribution of the cosmic rays reaching an observer from an individual source...
15 pages, 20 figuresWe extend previous studies of mixed-composition extragalactic cosmic-ray source ...
We discuss the effects of diffusion of high energy cosmic rays in turbulent extra-galactic magnetic ...
The flux of ultrahigh energy cosmic rays reaching the Earth is affected by the interactions with the...
We study the propagation of ultra-high-energy cosmic rays in the magnetised cosmic web. We focus on ...
International audienceWe simulate the propagation of cosmic rays at ultra-high energies, ≳10^18 eV, ...
The interplay between charged particles and turbulent magnetic fields is crucial to understanding ho...
We study the propagation of ultra-high-energy cosmic rays in the magnetised cosmic web. We focus on ...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
We study the influence of the random part of the galactic magnetic field on the propagation of ultra...
Abstract. It is established, that the main contribution into dynamics of galactic cosmic ray intensi...
Abstract: The flux of ultra-high energy (UHE) cosmic rays (CRs) depends on the cosmic distribution o...
We briefly review sources of cosmic rays, their composition and spectra as well as their propagation...
We briefly review sources of cosmic rays, their composition and spectra as well as their propagation...
We obtain the angular distribution of the cosmic rays reaching an observer from an individual source...
15 pages, 20 figuresWe extend previous studies of mixed-composition extragalactic cosmic-ray source ...
We discuss the effects of diffusion of high energy cosmic rays in turbulent extra-galactic magnetic ...
The flux of ultrahigh energy cosmic rays reaching the Earth is affected by the interactions with the...
We study the propagation of ultra-high-energy cosmic rays in the magnetised cosmic web. We focus on ...
International audienceWe simulate the propagation of cosmic rays at ultra-high energies, ≳10^18 eV, ...
The interplay between charged particles and turbulent magnetic fields is crucial to understanding ho...
We study the propagation of ultra-high-energy cosmic rays in the magnetised cosmic web. We focus on ...
We simulate the propagation of cosmic rays at ultra-high energies, 1018 eV, in models of extragalact...
We study the influence of the random part of the galactic magnetic field on the propagation of ultra...
Abstract. It is established, that the main contribution into dynamics of galactic cosmic ray intensi...