Monte-Carlo simulation calculation have been performed for 855 MeV electrons channeling in (110) planes of a diamond single crystal. The continuum potential picture has been utilized. Both, the transverse potential and the angular distributions of the scattered electrons at screened atoms are based on the Doyle-Turner scattering factors which were extrapolated with the functional dependence of the Moli\`{e}re representation to large momentum transfers. Scattering cross-sections at bound electrons have been derived for energies less than 30 keV from the double differential cross-section as function of both, energy and momentum transfer, taking into account also longitudinal and transverse excitations. For energies above 30 keV the M{\o}ller ...
International audienceDiamond is a promising candidate for power electronics as well as for radiatio...
We have investigated the channeling process of charged particles in a bent crystal. Invoking simple ...
A Monte Carlo procedure to simulate the penetration and energy loss of low¿energy electron beams thr...
Charged particles entering a crystal close to some preferred direction can be trapped in the electro...
An experiment was set up at the S-DALINAC injector of the Technische Hochschule Darmstadt to measure...
In this paper we present the results of a systematic numerical analysis of the channeling properties...
AbstractResults of numerical simulations of channeling of ultra-relativistic positrons are reported ...
Results obtained with a new Monte Carlo code ChaS for channeling of 855 MeV electrons along the crys...
Monte Carlo simulations of the interaction of particles with matter are usually done with downloadab...
This work investigates the transport of electrons having energies near those of the atomic binding l...
Channeling in bent crystals is becoming a reliable and efficient technique for collimating beams. At...
The Monte Carlo program CATCH (Capture And Transport of CHarged particles in a crystal) for the simu...
Diamond is an exceptionally radiation-hard material, but the main mechanisms by which lattice damage...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Experimental observations of the energy‐dependent electron‐beam penetration in type II‐A natural dia...
International audienceDiamond is a promising candidate for power electronics as well as for radiatio...
We have investigated the channeling process of charged particles in a bent crystal. Invoking simple ...
A Monte Carlo procedure to simulate the penetration and energy loss of low¿energy electron beams thr...
Charged particles entering a crystal close to some preferred direction can be trapped in the electro...
An experiment was set up at the S-DALINAC injector of the Technische Hochschule Darmstadt to measure...
In this paper we present the results of a systematic numerical analysis of the channeling properties...
AbstractResults of numerical simulations of channeling of ultra-relativistic positrons are reported ...
Results obtained with a new Monte Carlo code ChaS for channeling of 855 MeV electrons along the crys...
Monte Carlo simulations of the interaction of particles with matter are usually done with downloadab...
This work investigates the transport of electrons having energies near those of the atomic binding l...
Channeling in bent crystals is becoming a reliable and efficient technique for collimating beams. At...
The Monte Carlo program CATCH (Capture And Transport of CHarged particles in a crystal) for the simu...
Diamond is an exceptionally radiation-hard material, but the main mechanisms by which lattice damage...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Experimental observations of the energy‐dependent electron‐beam penetration in type II‐A natural dia...
International audienceDiamond is a promising candidate for power electronics as well as for radiatio...
We have investigated the channeling process of charged particles in a bent crystal. Invoking simple ...
A Monte Carlo procedure to simulate the penetration and energy loss of low¿energy electron beams thr...