In this letter, we present scanning electron microscopy (SEM) results that confirm in a direct way our earlier explanation of an abrupt coagulation event as the cause for the void hiccup. In a recent paper, we reported on the fast and interrupted expansion of voids in a reactive dusty argon–acetylene plasma. The voids appeared one after the other, each showing a peculiar, though reproducible, behavior of successive periods of fast expansion, abrupt contraction, and continued expansion. The abrupt contraction was termed “hiccup” and was related to collective coagulation of a new generation of nanoparticles growing in the void using relatively indirect methods: electron density measurements and optical emission spectroscopy. In this letter, w...
L'objectif de cette thèse est l'étude de la formation de nanoparticules carbonées dans un plasma bas...
We have extensively studied by multiple microscopic techniques the growth and crystallization of sil...
International audienceHuge quantities of nanoparticles can strongly modify plasma properties [1, 2] ...
In this letter, we present scanning electron microscopy (SEM) results that confirm in a direct way o...
Low-pressure acetylene plasmas are able to spontaneously form dust particles. This will result in a ...
Even though UV laser pulses that irradiate a gas discharge are small compared to the plasma volume (...
The influence of pressure and type of inert gas (Ar and Kr) on the morphology and size distribution ...
The onset and growth of a dust void are investigated in a radio-frequency (rf) sheath of a capacitiv...
Laser-induced formation of submicrometer dust particles and the subsequent coalescence phenomena in ...
One of the key parameters in low-pressure nanodusty plasmas is the dust particle size. In this work,...
In extreme ultraviolet (EUV) lithography, ionic and particulate debris coming from the plasma source...
L'objectif de cette thèse est l'étude de la formation de nanoparticules carbonées dans un plasma bas...
We have extensively studied by multiple microscopic techniques the growth and crystallization of sil...
International audienceHuge quantities of nanoparticles can strongly modify plasma properties [1, 2] ...
In this letter, we present scanning electron microscopy (SEM) results that confirm in a direct way o...
Low-pressure acetylene plasmas are able to spontaneously form dust particles. This will result in a ...
Even though UV laser pulses that irradiate a gas discharge are small compared to the plasma volume (...
The influence of pressure and type of inert gas (Ar and Kr) on the morphology and size distribution ...
The onset and growth of a dust void are investigated in a radio-frequency (rf) sheath of a capacitiv...
Laser-induced formation of submicrometer dust particles and the subsequent coalescence phenomena in ...
One of the key parameters in low-pressure nanodusty plasmas is the dust particle size. In this work,...
In extreme ultraviolet (EUV) lithography, ionic and particulate debris coming from the plasma source...
L'objectif de cette thèse est l'étude de la formation de nanoparticules carbonées dans un plasma bas...
We have extensively studied by multiple microscopic techniques the growth and crystallization of sil...
International audienceHuge quantities of nanoparticles can strongly modify plasma properties [1, 2] ...