textProfiles for electron density and temperature were determined in a self-consistent way using line emission spectroscopy and collisional radiative models for neutral and singly ionized Argon (Ar I and Ar II) in the Texas Helimak. Neutral Argon density profiles were calculated using a kinetic gas model. Electron-impact excitation and Ionization rates were corrected to account for the electron velocity distribution deviating slightly from a true Maxwellian distribution due to inelastic electron-neutral collisions. Results show an electron temperature which roughly agrees with probe diagnostics. This method gives an electron density that is about twice as high, which may be possible from a power balance perspective.Physic
The measurement of the electron mean kinetic energy by identifying the electron temperature and the ...
The spectroscopic method for gas temperature determination in argon non-thermal plasmas sustained at...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.Optical emission spectroscopy has been wide...
It is crucial to measure the electron density (ne) and temperature (Te) for applications such as dev...
This paper describes the use of Optical Emission Spectroscopy (OES) to measure electron densities an...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
A spectroscopic diagnostic tool has been developed to determine the electron temperature and the neu...
Comprehensive collisional radiative (CR) models have been developed for the diagnostic of argon plas...
A method is presented to det. the electron temp. in a low pressure Ar plasma using emission spectros...
A new collisional-radiative model for atmospheric-pressure low-temperature argon discharges is propo...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
Beam emission spectroscopy on thermal helium is used at the TEXTOR tokamak as a reliable method to o...
Non-intrusive emission spectroscopy plasma diagnostics allows for evaluation of the local temperatur...
A diode laser-based laser-induced fluorescence (LIF) diagnostic has been developed that can measure ...
The electron temperature in atmospheric argon plasmas created by a DBD jet is determined using a com...
The measurement of the electron mean kinetic energy by identifying the electron temperature and the ...
The spectroscopic method for gas temperature determination in argon non-thermal plasmas sustained at...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.Optical emission spectroscopy has been wide...
It is crucial to measure the electron density (ne) and temperature (Te) for applications such as dev...
This paper describes the use of Optical Emission Spectroscopy (OES) to measure electron densities an...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
A spectroscopic diagnostic tool has been developed to determine the electron temperature and the neu...
Comprehensive collisional radiative (CR) models have been developed for the diagnostic of argon plas...
A method is presented to det. the electron temp. in a low pressure Ar plasma using emission spectros...
A new collisional-radiative model for atmospheric-pressure low-temperature argon discharges is propo...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
Beam emission spectroscopy on thermal helium is used at the TEXTOR tokamak as a reliable method to o...
Non-intrusive emission spectroscopy plasma diagnostics allows for evaluation of the local temperatur...
A diode laser-based laser-induced fluorescence (LIF) diagnostic has been developed that can measure ...
The electron temperature in atmospheric argon plasmas created by a DBD jet is determined using a com...
The measurement of the electron mean kinetic energy by identifying the electron temperature and the ...
The spectroscopic method for gas temperature determination in argon non-thermal plasmas sustained at...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.Optical emission spectroscopy has been wide...