The Barkas effect in the electronic stopping power for dressed projectiles moving in a free electron gas is studied for a wide range of velocities v. The interaction of the projectile with the target is described using screened interaction potentials, which take into account the self screening due to the projectile bound electrons and the external screening produced by the target electron gas. The Barkas factor is obtained from a classical simulation of the scattering of the target electrons in the potential of the projectile and that of its antiparticle, following the transport cross section model. A large set of numerical simulations were made for different projectiles, degrees of ionization and velocities. We find that the Barkas factor ...
Après avoir montré que le ralentissement de faisceaux internes d'ions non relativistes dans la matiè...
Measurements of the electronic energy loss are presented for ⁴He and ⁷Li ions channeling along the S...
In this paper we propose a nonperturbative approximation to electronic stopping power based on the c...
The Barkas effect in the electronic stopping power for dressed projectiles moving in a free electron...
The energy loss of fast ions at close collision is mainly due to electron-ion collisions. The electr...
The contribution of the Barkas effect on the whole electronic stopping power is investigated via est...
Collisional electronic energy-loss straggling has been treated theoretically on the basis of the bin...
The distant collision part of the Z31-contribution to the stopping of nonrelativistic ions by bound ...
Stimulated by recent statements in the literature on electronic stopping of heavy ions in ...
According to a previous estimation made by Lindhard [Nucl. Instrum. Method Phys. Res. 132, 1 (1976)]...
A model has been developed to evaluate the stopping power for structured (not fully stripped) ion pr...
The self-consistent electron-ion potential V(r) is calculated for H ions in an electron gas system a...
Two different types of descriptions can be used to calculate the slowing down of a projectile throug...
In this paper the stopping power was calculated, representing the electrons of the target atom as a...
The aim of the work, a survey is presented on calculating the energy loss of charged particles withi...
Après avoir montré que le ralentissement de faisceaux internes d'ions non relativistes dans la matiè...
Measurements of the electronic energy loss are presented for ⁴He and ⁷Li ions channeling along the S...
In this paper we propose a nonperturbative approximation to electronic stopping power based on the c...
The Barkas effect in the electronic stopping power for dressed projectiles moving in a free electron...
The energy loss of fast ions at close collision is mainly due to electron-ion collisions. The electr...
The contribution of the Barkas effect on the whole electronic stopping power is investigated via est...
Collisional electronic energy-loss straggling has been treated theoretically on the basis of the bin...
The distant collision part of the Z31-contribution to the stopping of nonrelativistic ions by bound ...
Stimulated by recent statements in the literature on electronic stopping of heavy ions in ...
According to a previous estimation made by Lindhard [Nucl. Instrum. Method Phys. Res. 132, 1 (1976)]...
A model has been developed to evaluate the stopping power for structured (not fully stripped) ion pr...
The self-consistent electron-ion potential V(r) is calculated for H ions in an electron gas system a...
Two different types of descriptions can be used to calculate the slowing down of a projectile throug...
In this paper the stopping power was calculated, representing the electrons of the target atom as a...
The aim of the work, a survey is presented on calculating the energy loss of charged particles withi...
Après avoir montré que le ralentissement de faisceaux internes d'ions non relativistes dans la matiè...
Measurements of the electronic energy loss are presented for ⁴He and ⁷Li ions channeling along the S...
In this paper we propose a nonperturbative approximation to electronic stopping power based on the c...