In this paper results of the experimental investigations of a coaxial microwave (2.45 GHz) microplasma source (MMS) with graphite or tungsten inner conductor operated in Ar, N2 and Ar/C2H2 mixture at atmospheric pressure are presented. The microwave power absorbed by the microplasmas and the intensity of UV-C emission from the microplasmas were measured. Using optical emission spectroscopy, the electron number density in Ar microplasma, and rotational and vibrational temperatures in N2 and Ar/C2H2 microplasmas were determined. All experiments were performed with a gas flow rate from 0.3 to 8 l/min and absorbed microwave power from 5 to 300 W. The simplicity of the MMS, stability of its operation with atmospheric pressure gases, an...
Abstract: The microplasma source using a piezo-electric transformer is investigated for bio-medical ...
Miniaturized optogalvanic spectroscopy (OGS) shows excellent prospects of becoming ahighly sensitive...
Microplasmas have been receiving significant attention due to their miniaturized sizes, low power req...
We report the design, fabrication and characterization of two microwave-excited microplasma sources ...
In this paper, we study two microwave sources based on a planar transmission line configuration, co...
An atmospheric-pressure air microplasma is ignited and sustained in a 25 µm wide discharge gap forme...
Atmospheric argon microplasmas driven by 1.0 GHz power were studied by microwave circuit a...
This work was aimed at experimental investigations of deactivation of different types of microorgani...
The generation of plasma-on-a-chip is examined for two extremes in gas pressure. The application of ...
The electrical gas discharge parameters of direct-current non-thermal microplasma jet in Ar-2%H2 flo...
Integration of microplasma sources in portable systems sets constraints in the amount of power and v...
Plasma and aerodynamic features have been investigated for a microplasma thruster of electrothermal ...
A rf atmospheric pressure microplasma (APMP) in contact with a liquid electrode is characterized by ...
Abstract—Microplasma sources can be integrated into portable devices for applications such as bio-mi...
Atmospheric pressure plasma jet sources are currently in the focus of many researchers for their pro...
Abstract: The microplasma source using a piezo-electric transformer is investigated for bio-medical ...
Miniaturized optogalvanic spectroscopy (OGS) shows excellent prospects of becoming ahighly sensitive...
Microplasmas have been receiving significant attention due to their miniaturized sizes, low power req...
We report the design, fabrication and characterization of two microwave-excited microplasma sources ...
In this paper, we study two microwave sources based on a planar transmission line configuration, co...
An atmospheric-pressure air microplasma is ignited and sustained in a 25 µm wide discharge gap forme...
Atmospheric argon microplasmas driven by 1.0 GHz power were studied by microwave circuit a...
This work was aimed at experimental investigations of deactivation of different types of microorgani...
The generation of plasma-on-a-chip is examined for two extremes in gas pressure. The application of ...
The electrical gas discharge parameters of direct-current non-thermal microplasma jet in Ar-2%H2 flo...
Integration of microplasma sources in portable systems sets constraints in the amount of power and v...
Plasma and aerodynamic features have been investigated for a microplasma thruster of electrothermal ...
A rf atmospheric pressure microplasma (APMP) in contact with a liquid electrode is characterized by ...
Abstract—Microplasma sources can be integrated into portable devices for applications such as bio-mi...
Atmospheric pressure plasma jet sources are currently in the focus of many researchers for their pro...
Abstract: The microplasma source using a piezo-electric transformer is investigated for bio-medical ...
Miniaturized optogalvanic spectroscopy (OGS) shows excellent prospects of becoming ahighly sensitive...
Microplasmas have been receiving significant attention due to their miniaturized sizes, low power req...