The maximum energy to which cosmic rays can be accelerated at weakly magnetised ultrarelativistic shocks is investigated.We demonstrate that for such shocks, in which the scattering of energetic particles is mediated exclusively by ion skin-depth scale structures, as might be expected for a Weibel-mediated shock, there is an intrinsic limit on the maximum energy to which particles can be accelerated. This maximum energy is determined from the requirement that particles must be isotropized in the downstream plasma frame before the mean field transports them far downstream, and falls considerably short of what is required to produce ultra-high-energy cosmic rays. To circumvent this limit, a highly disorganized field is required on larger scal...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
The maximum energy to which cosmic rays can be accelerated at weakly magnetised ultrarelativistic sh...
The acceleration of ultrahigh energy cosmic rays, greater than or equal to10/sup 15 -20/ eV, is stil...
We examine limits to the energy to which cosmic rays can be accelerated by relativistic shocks, show...
We examine limits to the energy to which cosmic rays can be accelerated by relativistic shocks, show...
Aims. The flux of ultra high energy cosmic rays (UHECRs) at E > 1018.5 eV is believed to arise in pl...
Aims. The flux of ultra high energy cosmic rays (UHECRs) at E > 1018.5 eV is believed to arise in pl...
The origin of Ultra-High-Energy Cosmic Rays (UHECRs) is still an open question in Astrophysics. The ...
Abstract: The question of the origin of ultra-high-energy cosmic rays at relativistic shock waves is...
Accretion flows onto supergalactic-scale structures are accompanied with large spatial scale shock w...
Accretion flows onto supergalactic-scale structures are accompanied with large spatial scale shock w...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
The origin of ultra-high energy cosmic rays (UHECRs) has been an open question for decades. Here, we...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
The maximum energy to which cosmic rays can be accelerated at weakly magnetised ultrarelativistic sh...
The acceleration of ultrahigh energy cosmic rays, greater than or equal to10/sup 15 -20/ eV, is stil...
We examine limits to the energy to which cosmic rays can be accelerated by relativistic shocks, show...
We examine limits to the energy to which cosmic rays can be accelerated by relativistic shocks, show...
Aims. The flux of ultra high energy cosmic rays (UHECRs) at E > 1018.5 eV is believed to arise in pl...
Aims. The flux of ultra high energy cosmic rays (UHECRs) at E > 1018.5 eV is believed to arise in pl...
The origin of Ultra-High-Energy Cosmic Rays (UHECRs) is still an open question in Astrophysics. The ...
Abstract: The question of the origin of ultra-high-energy cosmic rays at relativistic shock waves is...
Accretion flows onto supergalactic-scale structures are accompanied with large spatial scale shock w...
Accretion flows onto supergalactic-scale structures are accompanied with large spatial scale shock w...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
The origin of ultra-high energy cosmic rays (UHECRs) has been an open question for decades. Here, we...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...
It has been suggested that relativistic shocks in extragalactic sources may accelerate the highest e...