We have determined “effective” Bethe coefficients and the mean excitation energy of stopping theory (I-value) for multiwalled carbon nanotubes (MWCNTs) and single-walled carbon nanotube (SWCNT) bundles based on a sum-rule constrained optical-data model energy loss function with improved asymptotic properties. Noticeable differences between MWCNTs, SWCNT bundles, and the three allotropes of carbon (diamond, graphite, glassy carbon) are found. By means of Bethe’s asymptotic approximation, the inelastic scattering cross section, the electronic stopping power, and the average energy transfer to target electrons in a single inelastic collision, are calculated analytically for a broad range of electron and proton beam energies using realistic exc...
By employing atomistic simulations based on an empirical potential, we study the collision dynamics ...
We have investigated theoretically the electronic stopping of protons in different solid forms of ca...
The research in the manuscript studies the wave characteristics in carbon nanotubes (CNTs) via beam ...
We have studied the energy loss of protons in multi-walled carbon nanotube (MWCNT) samples, both exp...
The effect of bulk and surface excitations to inelastic scattering in low-energy electron beam irrad...
Results of measurements of electronic energy loss for few keV protons and deuterons interacting with...
The response of fullerenes and carbon nanotubes is investigated by representing each carbon atom by ...
The irradiation with energetic proton beams impinging normal to the axis of a multi-walled carbon na...
The idea of using carbon nanotubes (CNTs) as masks against irradiation has recently emerged, because...
The energy dissipation pattern of low-energy electron beams (0.3–30 keV) in multi-walled carbon nano...
Carbon nanotube properties can be modified by ion irradiation; therefore it is important to know the...
Results of a study of electronic energy loss of low keV protons interacting with multilayer graphene...
Carbon nanotubes have great potential for nanoscale devices. Previous studies have shown the prospec...
We present a simple model dielectric response function for both bulk and individual carbon nanotubes...
The technological interest in a material depends very much on its electrical, magnetic, optical and/...
By employing atomistic simulations based on an empirical potential, we study the collision dynamics ...
We have investigated theoretically the electronic stopping of protons in different solid forms of ca...
The research in the manuscript studies the wave characteristics in carbon nanotubes (CNTs) via beam ...
We have studied the energy loss of protons in multi-walled carbon nanotube (MWCNT) samples, both exp...
The effect of bulk and surface excitations to inelastic scattering in low-energy electron beam irrad...
Results of measurements of electronic energy loss for few keV protons and deuterons interacting with...
The response of fullerenes and carbon nanotubes is investigated by representing each carbon atom by ...
The irradiation with energetic proton beams impinging normal to the axis of a multi-walled carbon na...
The idea of using carbon nanotubes (CNTs) as masks against irradiation has recently emerged, because...
The energy dissipation pattern of low-energy electron beams (0.3–30 keV) in multi-walled carbon nano...
Carbon nanotube properties can be modified by ion irradiation; therefore it is important to know the...
Results of a study of electronic energy loss of low keV protons interacting with multilayer graphene...
Carbon nanotubes have great potential for nanoscale devices. Previous studies have shown the prospec...
We present a simple model dielectric response function for both bulk and individual carbon nanotubes...
The technological interest in a material depends very much on its electrical, magnetic, optical and/...
By employing atomistic simulations based on an empirical potential, we study the collision dynamics ...
We have investigated theoretically the electronic stopping of protons in different solid forms of ca...
The research in the manuscript studies the wave characteristics in carbon nanotubes (CNTs) via beam ...