A microplasma generated between a stainless-steel capillary and water surface in ambient air with flowing argon as working gas appears as a bright spot at the tube orifice and expands to form a larger footprint on the water surface, and the dimensions of the bell-shaped microplasma are all below 1 mm. The electron density of the microplasma is estimated to be ranging from $5.32 \times 10^{9}$ cm−3 to $2.02\times 10^{14}$ cm−3 for the different operating conditions, which is desirable for generating abundant amounts of reactive species. A computational technique is adopted to fit the experimental emission from the N2 second positive system with simulation results. It is concluded that the vibrational temperature (more than 2000 K) is more ...
An atmospheric-pressure air microplasma is ignited and sustained in a 25 µm wide discharge gap forme...
Microplasmas refer to electric discharges created in very small geometries able to operate in DC mo...
The electrical gas discharge parameters of direct-current non-thermal microplasma jet in Ar-2%H2 flo...
A microplasma generated between a stainless-steel capillary and water surface in ambient air with fl...
International audienceMicroplasmas are a sizable part of non-equilibrium non-thermal plasma sources....
The DC-driven atmospheric-pressure microplasma is generated in a helium gas flowing through the meta...
An atmospheric pressure plasma jet is created in helium gas flowing from a grounded capillary tube. ...
We continue the research of low-pressure capillary discharge lamps of 500 μm in radius in Ar/Hg, Kr/...
We continue the research of low-pressure capillary discharge lamps of 500 μm in radius in Ar/Hg, Kr/...
Non-equilibrium microplasmas at atmospheric pressures have been investigated for active flow control...
In this study, a microplasma discharge device (MDD) was modelled and simulated for sterilization app...
Microplasma was formed in a gap hole made in a quartz plate immersed in various kinds of electrolyte...
A rf atmospheric pressure microplasma (APMP) in contact with a liquid electrode is characterized by ...
Abstract—Inactivation of microorganisms, such as Escherichia coli, by exposure to a microplasma is e...
Optical emission spectroscopy measurements were performed with added trace probe gases in an atmosph...
An atmospheric-pressure air microplasma is ignited and sustained in a 25 µm wide discharge gap forme...
Microplasmas refer to electric discharges created in very small geometries able to operate in DC mo...
The electrical gas discharge parameters of direct-current non-thermal microplasma jet in Ar-2%H2 flo...
A microplasma generated between a stainless-steel capillary and water surface in ambient air with fl...
International audienceMicroplasmas are a sizable part of non-equilibrium non-thermal plasma sources....
The DC-driven atmospheric-pressure microplasma is generated in a helium gas flowing through the meta...
An atmospheric pressure plasma jet is created in helium gas flowing from a grounded capillary tube. ...
We continue the research of low-pressure capillary discharge lamps of 500 μm in radius in Ar/Hg, Kr/...
We continue the research of low-pressure capillary discharge lamps of 500 μm in radius in Ar/Hg, Kr/...
Non-equilibrium microplasmas at atmospheric pressures have been investigated for active flow control...
In this study, a microplasma discharge device (MDD) was modelled and simulated for sterilization app...
Microplasma was formed in a gap hole made in a quartz plate immersed in various kinds of electrolyte...
A rf atmospheric pressure microplasma (APMP) in contact with a liquid electrode is characterized by ...
Abstract—Inactivation of microorganisms, such as Escherichia coli, by exposure to a microplasma is e...
Optical emission spectroscopy measurements were performed with added trace probe gases in an atmosph...
An atmospheric-pressure air microplasma is ignited and sustained in a 25 µm wide discharge gap forme...
Microplasmas refer to electric discharges created in very small geometries able to operate in DC mo...
The electrical gas discharge parameters of direct-current non-thermal microplasma jet in Ar-2%H2 flo...