AbstractThe response of titanium surface irradiated with high intensity (1013 – 1015 W/cm2) Ti:sapphire laser was studied in vacuum. Most of the reported investigations were conducted with nano- to femtosecond lasers in gas atmospheres while the studies of titanium surface interacting with femtosecond laser in vacuum are scarce. The laser employed in our experiment was operating at 800 nm wavelength and pulse duration of 60 fs in single pulse regime. The observed surface changes and phenomena are (1) creation of craters, (2) formation of periodic surface structures at the reduced intensity, and (3) occurrence of plasma in front the target. Since microstructuring of titanium is very interesting in many areas (industry, medicine), it can be c...
Interaction of a TEA CO2 laser with a titanium implant in vacuum (air pressure 0.1 mbar) was studied...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
A study of ASP 30 steel surface modification with high intensity Ti:sapphire laser, operating at 804...
AbstractThe response of titanium surface irradiated with high intensity (1013 – 1015 W/cm2) Ti:sapph...
The response of titanium surface irradiated with high intensity (10(13) - 10(15) W/cm(2)) Ti:sapphir...
The effect of an infrared pulse laser with femtosecond radiation (λ = 744 nm, τ ≈ 120 fs, E ≤ 8 mJ) ...
The surface of a titanium-based alloy Ti6Al4V was subjected to modifications by a near-IR femtosecon...
Interaction of pulsed femtosecond Ti:sapphire laser (160 fs), operating at high repetition rate (75 ...
In order to realize the qualitative control of the laser-induced changes trend and the quantitative ...
By subjecting technical grade titanium to irradiation with femtosecond laser pulses with highenergy ...
The evolution of the topography of titanium surfaces treated with femtosecond laser radiation in sta...
The effects of an Nd:YAG laser interaction with titanium target using laser radiation at wavelengths...
Coatings based on titanium nitrides, titanium carbides and silicon carbides can optimize the surface...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
Femtosecond laser surface processing (FLSP) can be used to functionalize many surfaces, imparting sp...
Interaction of a TEA CO2 laser with a titanium implant in vacuum (air pressure 0.1 mbar) was studied...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
A study of ASP 30 steel surface modification with high intensity Ti:sapphire laser, operating at 804...
AbstractThe response of titanium surface irradiated with high intensity (1013 – 1015 W/cm2) Ti:sapph...
The response of titanium surface irradiated with high intensity (10(13) - 10(15) W/cm(2)) Ti:sapphir...
The effect of an infrared pulse laser with femtosecond radiation (λ = 744 nm, τ ≈ 120 fs, E ≤ 8 mJ) ...
The surface of a titanium-based alloy Ti6Al4V was subjected to modifications by a near-IR femtosecon...
Interaction of pulsed femtosecond Ti:sapphire laser (160 fs), operating at high repetition rate (75 ...
In order to realize the qualitative control of the laser-induced changes trend and the quantitative ...
By subjecting technical grade titanium to irradiation with femtosecond laser pulses with highenergy ...
The evolution of the topography of titanium surfaces treated with femtosecond laser radiation in sta...
The effects of an Nd:YAG laser interaction with titanium target using laser radiation at wavelengths...
Coatings based on titanium nitrides, titanium carbides and silicon carbides can optimize the surface...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
Femtosecond laser surface processing (FLSP) can be used to functionalize many surfaces, imparting sp...
Interaction of a TEA CO2 laser with a titanium implant in vacuum (air pressure 0.1 mbar) was studied...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
A study of ASP 30 steel surface modification with high intensity Ti:sapphire laser, operating at 804...