The process of cosmic ray acceleration up to energies in excess of $10^{20}$ eV at relativistic shock waves with large Lorentz factors, $\Gamma \gg 1$ requires $\sim \Gamma^2$ particle energy gains at single reflections from the shock (cf. Gallant & Achterberg 1999). In the present comment, applying numerical simulations we address an efficiency problem arising for such models. The actual efficiency of the acceleration process is expected to be substantially lower than the estimates of previous authors
International audienceWhen two galaxy clusters encounter each other, the interaction results in a co...
Abstract. The physics of particle acceleration by collisionless shocks is addressed using analytic t...
International audienceTo investigate whether gamma-ray bursts could be the sources of ultra-high ene...
The theory of shock acceleration predicts the maximum particle energy to be limited only by the acce...
The maximum energy to which cosmic rays can be accelerated at weakly magnetised ultrarelativistic sh...
4 pages, 2 figures; to appear in ApJ LettersIt is shown that Fermi acceleration at an ultra-relativi...
We examine limits to the energy to which cosmic rays can be accelerated by relativistic shocks, show...
The first-order Fermi acceleration process at an ultra-relativistic shock wave is expected to create...
We suggest a physical mechanism whereby the acceleration time of cosmic rays (CRs) by shock waves ca...
Monte Carlo computations for highly relativistic parallel shock particle acceleration are presented ...
Abstract: The question of the origin of ultra-high-energy cosmic rays at relativistic shock waves is...
We consider the acceleration of charged particles near ultrarelativistic shocks, with Lorentz factor...
4 pages, note on second paper correctedThe cosmic rays spectrum has been shown to extend well beyond...
Our purpose is to evaluate the rate of the maximum energy and the acceleration rate that cosmic rays...
Particle-in-cell simulations of relativistic, weakly magnetized collisionless shocks show that parti...
International audienceWhen two galaxy clusters encounter each other, the interaction results in a co...
Abstract. The physics of particle acceleration by collisionless shocks is addressed using analytic t...
International audienceTo investigate whether gamma-ray bursts could be the sources of ultra-high ene...
The theory of shock acceleration predicts the maximum particle energy to be limited only by the acce...
The maximum energy to which cosmic rays can be accelerated at weakly magnetised ultrarelativistic sh...
4 pages, 2 figures; to appear in ApJ LettersIt is shown that Fermi acceleration at an ultra-relativi...
We examine limits to the energy to which cosmic rays can be accelerated by relativistic shocks, show...
The first-order Fermi acceleration process at an ultra-relativistic shock wave is expected to create...
We suggest a physical mechanism whereby the acceleration time of cosmic rays (CRs) by shock waves ca...
Monte Carlo computations for highly relativistic parallel shock particle acceleration are presented ...
Abstract: The question of the origin of ultra-high-energy cosmic rays at relativistic shock waves is...
We consider the acceleration of charged particles near ultrarelativistic shocks, with Lorentz factor...
4 pages, note on second paper correctedThe cosmic rays spectrum has been shown to extend well beyond...
Our purpose is to evaluate the rate of the maximum energy and the acceleration rate that cosmic rays...
Particle-in-cell simulations of relativistic, weakly magnetized collisionless shocks show that parti...
International audienceWhen two galaxy clusters encounter each other, the interaction results in a co...
Abstract. The physics of particle acceleration by collisionless shocks is addressed using analytic t...
International audienceTo investigate whether gamma-ray bursts could be the sources of ultra-high ene...