Stimulated by recent statements in the literature on electronic stopping of heavy ions in matter, we try to clarify some central theoretical aspects of the Barkas-Andersen effect, about which there does not seem to be unanimous agreement in the community. We address the role of inner versus outer target shells, of projectile screening by bound electrons, the interference between Lindhard’s description and perturbation theory, as well as the equivalence between a single-electron versus Fermi-gas description of the effect
A computational scheme has been developed to estimate the mean electronic energy loss of an incident...
The density effect for swift heavy ions in carbon target is analyzed from a stopping power theory po...
The Bohr theory treats charged-particle stopping as a sequence of interactions with classical targe...
The Barkas effect in the electronic stopping power for dressed projectiles moving in a free electron...
Collisional electronic energy-loss straggling has been treated theoretically on the basis of the bin...
The energy loss of fast ions at close collision is mainly due to electron-ion collisions. The electr...
According to a previous estimation made by Lindhard [Nucl. Instrum. Method Phys. Res. 132, 1 (1976)]...
The contribution of the Barkas effect on the whole electronic stopping power is investigated via est...
The distant collision part of the Z31-contribution to the stopping of nonrelativistic ions by bound ...
Measurements of the electronic energy loss are presented for ⁴He and ⁷Li ions channeling along the S...
A critical analysis of channeled-ion energy-loss experiments is presented with the goal of commentin...
In this work we have measured the electronic energy loss of 9Be and 11B ions for the k100l and k110l...
The familiar results of effective charge theory of the electronic stopping of heavy ions in solids h...
Two different types of descriptions can be used to calculate the slowing down of a projectile throug...
In this work we have measured the electronic energy loss of ⁹Be and ¹¹B ions for the ‹100› and ‹110›...
A computational scheme has been developed to estimate the mean electronic energy loss of an incident...
The density effect for swift heavy ions in carbon target is analyzed from a stopping power theory po...
The Bohr theory treats charged-particle stopping as a sequence of interactions with classical targe...
The Barkas effect in the electronic stopping power for dressed projectiles moving in a free electron...
Collisional electronic energy-loss straggling has been treated theoretically on the basis of the bin...
The energy loss of fast ions at close collision is mainly due to electron-ion collisions. The electr...
According to a previous estimation made by Lindhard [Nucl. Instrum. Method Phys. Res. 132, 1 (1976)]...
The contribution of the Barkas effect on the whole electronic stopping power is investigated via est...
The distant collision part of the Z31-contribution to the stopping of nonrelativistic ions by bound ...
Measurements of the electronic energy loss are presented for ⁴He and ⁷Li ions channeling along the S...
A critical analysis of channeled-ion energy-loss experiments is presented with the goal of commentin...
In this work we have measured the electronic energy loss of 9Be and 11B ions for the k100l and k110l...
The familiar results of effective charge theory of the electronic stopping of heavy ions in solids h...
Two different types of descriptions can be used to calculate the slowing down of a projectile throug...
In this work we have measured the electronic energy loss of ⁹Be and ¹¹B ions for the ‹100› and ‹110›...
A computational scheme has been developed to estimate the mean electronic energy loss of an incident...
The density effect for swift heavy ions in carbon target is analyzed from a stopping power theory po...
The Bohr theory treats charged-particle stopping as a sequence of interactions with classical targe...