International audiencePrecise nanostructuration of surface and the subsequent upgrades in material properties is a strong outcome of ultra fast laser irradiations. Material characteristics can be designed on mesoscopic scales, carrying new optical properties. We demonstrate in this work, the possibility of achieving material modifications using ultra short pulses, via polarization dependent structures generation, that can generate specific color patterns. These oriented nanostructures created on the metal surface, called ripples, are typically smaller than the laser wavelength and in the range of visible spectrum. In this way, a complex colorization process of the material, involving imprinting, calibration and reading, has been performed t...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
Understanding of material behaviour at nanoscale under intense laser excitation is becoming critical...
International audiencePrecise nanostructuration of surface and the subsequent upgrades in material p...
La surface irradiée par laser ultra-rapide est un parangon typique d'un système auto-organisé, qui é...
We have studied the nanostructuring and colorizing of the copper surface by scanning with a femtosec...
With the appearance of ultrashort pulse lasers, the researchers have begun working on various laser ...
During the last two decades, the fields of nanotechnology and lasers are growing rapidly, introducin...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Physically, the colour of an object is a complex result of its intrinsic surface properties, its tra...
Formation of sub‐wavelength periodic surface structures ‐ ripples ‐ was studied in...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
Understanding of material behaviour at nanoscale under intense laser excitation is becoming critical...
International audiencePrecise nanostructuration of surface and the subsequent upgrades in material p...
La surface irradiée par laser ultra-rapide est un parangon typique d'un système auto-organisé, qui é...
We have studied the nanostructuring and colorizing of the copper surface by scanning with a femtosec...
With the appearance of ultrashort pulse lasers, the researchers have begun working on various laser ...
During the last two decades, the fields of nanotechnology and lasers are growing rapidly, introducin...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Ultrafast-laser irradiated surface is a typical paragon of a self-organizing system, which emerge an...
Physically, the colour of an object is a complex result of its intrinsic surface properties, its tra...
Formation of sub‐wavelength periodic surface structures ‐ ripples ‐ was studied in...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
Understanding of material behaviour at nanoscale under intense laser excitation is becoming critical...