A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by measuring the electron density and electron temperature using Thomson scattering. The measurements have been performed spatially resolved for two different electrode configurations and as a function of the plasma dissipated power and air concentration admixed to the Ar. Time resolved measurements of electron densities and temperatures during the RF cycle and after plasma power switch-off are presented. Furthermore, the influence of the plasma on the air entrainment into the effluent is studied using Raman scattering. (C) 2013 AIP Publishing LLC
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
Laser scattering provides a very direct method for measuring the local densities and temperatures in...
One of the driving forces behind the development of cold plasma sources at atmospheric pressure is t...
One of the driving forces behind the development of cold plasma sources at atmospheric pressure is t...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
A time modulated radio frequency (RF) plasma jet operated with an Ar mixture is investigated by meas...
Laser scattering provides a very direct method for measuring the local densities and temperatures in...
One of the driving forces behind the development of cold plasma sources at atmospheric pressure is t...
One of the driving forces behind the development of cold plasma sources at atmospheric pressure is t...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
In this paper, laser scattering is applied to a cold atmospheric-pressure microwave plasma argon jet...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...
A set of diagnostic methods to obtain the plasma parameters including power dissipation, gas tempera...