International audienceLaser pulses can effectively induce local structural changes and modify the physical properties of carbon allotropes. So far, only graphitization has been demonstrated using low laser energies (1 J / c m 2). The novelty of this paper is a result of laser-induced amorphization of a highly anisotropic carbon allotrope by using high energy (1.5e15.4 J/cm2) 5 ns, 532 nm Nd-YAG laser pulses. Moreover, cycling phase change, between an amorphous and a crystalline phase, is also obtained by adjusting the pulse energy. However, cycling ability is restricted to a few cycles as a consequence of laser-induced surface damages caused by both high temperatures during and high thermal gradients during and after laser exposure. The occ...
Nano and femtosecond laser writing are becoming very popular techniques for patterning carbon-based ...
We have investigated the direct laser interference patterning (DLIP) of tetrahedral amorphous carbon...
As a characteristic trend in the material science of our days, new technologies are being investigat...
International audienceLaser pulses can effectively induce local structural changes and modify the ph...
have been monitored by reflection high energy electron diffraction, Raman spectroscopy, and electron...
As Moore’s law is expected to fail soon, researchers are trying to develop new ways to store data bo...
To develop optically-controlled resistive memories, we study the laser-induced graphitization and am...
AbstractThe combination of high energy and ultra short duration of femtosecond laser pulses allow to...
This research article describes the effects of a laser ablation on graphite block surface, where a N...
In the paper we report on laser surface modification of super hard micrometer-thick tetrahedral amor...
We present the results of an experiment where amorphous carbon undergoes a phase transition induced ...
We have produced hydrogen-free tetrahedral amorphous carbon films with different densities and Young...
Experiments and theory are employed to investigate the laser ablation of boron doped diamond and tet...
A pressure cell with an anvil made of sapphire and the other made of tungsten carbide, was construct...
Nano and femtosecond laser writing are becoming very popular techniques for patterning carbon-based ...
We have investigated the direct laser interference patterning (DLIP) of tetrahedral amorphous carbon...
As a characteristic trend in the material science of our days, new technologies are being investigat...
International audienceLaser pulses can effectively induce local structural changes and modify the ph...
have been monitored by reflection high energy electron diffraction, Raman spectroscopy, and electron...
As Moore’s law is expected to fail soon, researchers are trying to develop new ways to store data bo...
To develop optically-controlled resistive memories, we study the laser-induced graphitization and am...
AbstractThe combination of high energy and ultra short duration of femtosecond laser pulses allow to...
This research article describes the effects of a laser ablation on graphite block surface, where a N...
In the paper we report on laser surface modification of super hard micrometer-thick tetrahedral amor...
We present the results of an experiment where amorphous carbon undergoes a phase transition induced ...
We have produced hydrogen-free tetrahedral amorphous carbon films with different densities and Young...
Experiments and theory are employed to investigate the laser ablation of boron doped diamond and tet...
A pressure cell with an anvil made of sapphire and the other made of tungsten carbide, was construct...
Nano and femtosecond laser writing are becoming very popular techniques for patterning carbon-based ...
We have investigated the direct laser interference patterning (DLIP) of tetrahedral amorphous carbon...
As a characteristic trend in the material science of our days, new technologies are being investigat...