Diamond like carbon (DLC) thin films was deposited, using ion beam deposition (IBD). Samples were irradiated by the first (1064 nm), the second (532 nm), and the third (355 nm) laser harmonics, changing pulse number per spot, irradiation power intensity. After the laser irradiation films were analyzed by scanning electron microscopy (SEM), null-ellipsometry Gaertner L117 operating with He – Ne laser (λHe-Ne = 632.8 nm), Fourier transform infrared (FTIR), and Raman scattering (RS) spectroscopes, Vickers hardness method. After the annealing by first harmonic (70 MW/cm2) caused SiC and nc – Si formation in the substrate boundary, the slight increase of the sp2 C=C sites fraction. A weak influence was on the surface morphology and microha...
Experiments are described in which a focused pulsed-excimer laser beam is used either to ablate a gr...
In the paper we report on laser surface modification of super hard micrometer-thick tetrahedral amor...
Previous work has shown that the bonding structure and phase of amorphous carbon (a-C) can be modifi...
Amorphous hydrogenated carbon films were formed on the Si (100) wafers by a direct-ion beam depositi...
Amorphous carbon films are perspective materials for many biological applications. Laser treatment i...
Amorphous diamond-like hydrogenated carbon, or a-C:H, films were deposited on Si wafers by means of ...
Diamond-like carbon (DLC) films have been prepared by pulsed laser deposition (PLD) (wavelength 248 ...
The effect of a nanosecond laser irradiation of graphite-like carbon (GLC) films deposited on Si sub...
Hard diamond-like carbon films prepared by laser-induced vacuum arc evaporation (LASER-ARC) on silic...
Unhydrogenated diamondlike carbon (DLC) thin films have been deposited by laser ablation of graphite...
In this study, the diamond-like carbon (DLC), a tetrahedral amorphous carbon sample deposited on Si,...
We have produced hydrogen-free tetrahedral amorphous carbon films with different densities and Young...
Previous works have showed that textured carbon film can be fabricated by applying suitable ion ener...
Pulsed laser deposition (PLD) with KrF-excimer laser radiation (lambda = 248 nm, tau = 25 ns) is use...
Pulsed laser deposition with KrF-excimer laser radiation (lambda = 248 nm; t = 25 ns) is used to gro...
Experiments are described in which a focused pulsed-excimer laser beam is used either to ablate a gr...
In the paper we report on laser surface modification of super hard micrometer-thick tetrahedral amor...
Previous work has shown that the bonding structure and phase of amorphous carbon (a-C) can be modifi...
Amorphous hydrogenated carbon films were formed on the Si (100) wafers by a direct-ion beam depositi...
Amorphous carbon films are perspective materials for many biological applications. Laser treatment i...
Amorphous diamond-like hydrogenated carbon, or a-C:H, films were deposited on Si wafers by means of ...
Diamond-like carbon (DLC) films have been prepared by pulsed laser deposition (PLD) (wavelength 248 ...
The effect of a nanosecond laser irradiation of graphite-like carbon (GLC) films deposited on Si sub...
Hard diamond-like carbon films prepared by laser-induced vacuum arc evaporation (LASER-ARC) on silic...
Unhydrogenated diamondlike carbon (DLC) thin films have been deposited by laser ablation of graphite...
In this study, the diamond-like carbon (DLC), a tetrahedral amorphous carbon sample deposited on Si,...
We have produced hydrogen-free tetrahedral amorphous carbon films with different densities and Young...
Previous works have showed that textured carbon film can be fabricated by applying suitable ion ener...
Pulsed laser deposition (PLD) with KrF-excimer laser radiation (lambda = 248 nm, tau = 25 ns) is use...
Pulsed laser deposition with KrF-excimer laser radiation (lambda = 248 nm; t = 25 ns) is used to gro...
Experiments are described in which a focused pulsed-excimer laser beam is used either to ablate a gr...
In the paper we report on laser surface modification of super hard micrometer-thick tetrahedral amor...
Previous work has shown that the bonding structure and phase of amorphous carbon (a-C) can be modifi...