We have measured local electron density and temperature profiles in an inductively coupled plasma using absolute intensities of highly excited argon states. The electron density profiles are compared with the results of spatially resolved Stark broadening of the H-ß line. By this comparison ionizing and recombining parts of the inductively coupled plasma can be distinguished from each other. The density profile is further investigated for different operating conditions
In an effort to elucidate excitation and ionization of analyte in the inductively coupled plasma, ex...
A closed 13.6 MHz inductively coupled argon plasma with a volume of 2 cm3 is investigated by active ...
It is shown that the state of an ICP plasma can be adequately described by a measured electron densi...
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 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 profiles of the electron density and temperature in an atmospheric plasma usi...
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...
A new approach to evaluating departures from local thermal equilibrium (LTE) in the inductively coup...
In an effort to elucidate excitation and ionization of analyte in the inductively coupled plasma, ex...
In an effort to elucidate excitation and ionization of analyte in the inductively coupled plasma, ex...
A closed 13.6 MHz inductively coupled argon plasma with a volume of 2 cm3 is investigated by active ...
It is shown that the state of an ICP plasma can be adequately described by a measured electron densi...
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 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 profiles of the electron density and temperature in an atmospheric plasma usi...
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...
A new approach to evaluating departures from local thermal equilibrium (LTE) in the inductively coup...
In an effort to elucidate excitation and ionization of analyte in the inductively coupled plasma, ex...
In an effort to elucidate excitation and ionization of analyte in the inductively coupled plasma, ex...
A closed 13.6 MHz inductively coupled argon plasma with a volume of 2 cm3 is investigated by active ...
It is shown that the state of an ICP plasma can be adequately described by a measured electron densi...