We have measured local profiles of the electron density and temperature in an atmospheric plasma using absolute intensities of highly excited argon states. The electron-density profile has been determined independently by spatially resolved measurements of the Stark broadening of the hydrogen-ß line. By comparing these two methods, deviations from local thermal equilibrium may be characterized. Experimental results from an inductively-coupled argon plasma are presented and indicate that the plasma is close to LTE
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
International audienceThe aim of the paper is to test the accuracy of classical spectroscopic method...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We present a detailed analysis of an argon inductively coupled plasma in terms of electron density a...
We present a detailed analysis of an argon inductively coupled plasma in terms of electron density a...
We present a detailed analysis of an argon inductively coupled plasma in terms of electron density a...
We measured electron density and electron energy distribution function (EEDF) in our reactor by a La...
We measured electron density and electron energy distribution function (EEDF) in our reactor by a La...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
International audienceThe aim of the paper is to test the accuracy of classical spectroscopic method...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
We have measured local profiles of the electron density and temperature in an atmospheric plasma usi...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We have measured local electron density and temperature profiles in an inductively coupled plasma us...
We present a detailed analysis of an argon inductively coupled plasma in terms of electron density a...
We present a detailed analysis of an argon inductively coupled plasma in terms of electron density a...
We present a detailed analysis of an argon inductively coupled plasma in terms of electron density a...
We measured electron density and electron energy distribution function (EEDF) in our reactor by a La...
We measured electron density and electron energy distribution function (EEDF) in our reactor by a La...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
The electron temperature T/sub e/ is obtained from five optically non-thin Ar I line-transitions. It...
International audienceThe aim of the paper is to test the accuracy of classical spectroscopic method...