We investigate how the dynamic polarization of the carbon atom valence electrons affects the spatial distributions of protons channeled in (11, 9) single-wall carbon nanotubes placed in vacuum and embedded in various dielectric media. The initial proton speed is varied between 3 and 8 a.u., corresponding to the energies between 0.223 and 1.59 MeV, respectively, while the nanotube length is varied between 0.1 and 0.8 mu m. The spatial distributions of channeled protons are generated using a computer simulation method, which includes the numerical solving of the proton equations of motion in the transverse plane. We show that the dynamic polarization effect can strongly affect the rainbow maxima in the spatial distributions, so as to increase...
In this paper we investigate possibility of carbon nanotubes characterization by differentiation in ...
ABSTRACT Carbon nanotubes, unmodified (pristine) and modified through charged atoms, were simulated ...
In this paper proton channeling through armchair single-walled-carbon-nanotubes (SWCNTs) with aligne...
We investigate how the dynamic polarization of the carbon atom valence electrons affects the spatial...
We investigate how dynamic polarization of carbon valence electrons influences both the angular and ...
The best level of ordering and straightening of carbon nanotube arrays is often achieved when they a...
We investigate the influence of the dynamic polarization of the carbon valence electrons on the angu...
We investigate the angular and spatial distributions of protons with an energy of 0.223 MeV after ch...
We investigate the influence of the effect of dynamic polarization of the carbon atom valence electr...
We investigate spatial distributions of protons of the initial energy of 10-40 MeV after channeling ...
Abstract: Subject of this study is a theoretical investigation of the channeling of high energy prot...
In this paper we have presented a theoretical investigation of the channeling of 1 GeV protons with ...
We have studied theoretically the angular distributions of 1 GeV protons channeled through the long ...
Abstract. We have studied theoretically the angular distributions of 1 GeV protons chan-neled throug...
We investigate the interactions of charged particles with straight and bent single-walled carbon nan...
In this paper we investigate possibility of carbon nanotubes characterization by differentiation in ...
ABSTRACT Carbon nanotubes, unmodified (pristine) and modified through charged atoms, were simulated ...
In this paper proton channeling through armchair single-walled-carbon-nanotubes (SWCNTs) with aligne...
We investigate how the dynamic polarization of the carbon atom valence electrons affects the spatial...
We investigate how dynamic polarization of carbon valence electrons influences both the angular and ...
The best level of ordering and straightening of carbon nanotube arrays is often achieved when they a...
We investigate the influence of the dynamic polarization of the carbon valence electrons on the angu...
We investigate the angular and spatial distributions of protons with an energy of 0.223 MeV after ch...
We investigate the influence of the effect of dynamic polarization of the carbon atom valence electr...
We investigate spatial distributions of protons of the initial energy of 10-40 MeV after channeling ...
Abstract: Subject of this study is a theoretical investigation of the channeling of high energy prot...
In this paper we have presented a theoretical investigation of the channeling of 1 GeV protons with ...
We have studied theoretically the angular distributions of 1 GeV protons channeled through the long ...
Abstract. We have studied theoretically the angular distributions of 1 GeV protons chan-neled throug...
We investigate the interactions of charged particles with straight and bent single-walled carbon nan...
In this paper we investigate possibility of carbon nanotubes characterization by differentiation in ...
ABSTRACT Carbon nanotubes, unmodified (pristine) and modified through charged atoms, were simulated ...
In this paper proton channeling through armchair single-walled-carbon-nanotubes (SWCNTs) with aligne...