Laser-induced fluorescence (LIF) is used to determine the density and rotational temperature of the nitric oxide (NO) X ground state in a microwave plasma jet. The jet is operated in ambient air with a flow of helium mixed with 0–6% air. The applied microwave power is 18–55 W. The obtained temperatures are compared with rotational temperatures of the NO A excited state and the N_2 C state, obtained with optical emission spectroscopy. The temperatures obtained with optical emission spectroscopy (OES) are found to be approximately 30% higher than those obtained with LIF. This suggests that the common assumption that the rotational distribution of the excited state is thermalized within the effective lifetime might not be correct. The absolute...
This thesis presents a novel, asymmetrical atmospheric pressure plasma jet, that uses air as its wor...
A method for the measurement of temperatures and densities in rarefied flow is the Laser Induced Flu...
International audienceFor the first time, absolute densities of atomic nitrogen in its ground state ...
Laser-induced fluorescence (LIF) is used to determine the density and rotational temperature of the ...
Laser induced fluorescence (LIF) measurements of nitric oxide (NO) are performed in an atmospheric p...
The effluent of an RF argon atmospheric pressure plasma jet, the so-called kinpen, is investigated w...
Atmospheric pressure plasma jets (APPJs) are plasmas produced at an electrode inserted in a tube thr...
In this paper we present a method to automatically fit the temperature of a rotational spectrum. It ...
A time modulated RF atmospheric pressure plasma jet, operated in ambient air with a flow of argon wi...
In this paper, the ground state OH density is measured in high pressure plasma by laser-induced fluo...
International audienceThis paper deals high temperature chemistry of air in interaction with a metal...
This paper presents optical imaging and optical emission spectroscopy (OES) data of an atmospheric-p...
Non-equilibrium atmospheric pressure plasma jets (APPJs) have been extensively investigated during t...
This thesis presents a novel, asymmetrical atmospheric pressure plasma jet, that uses air as its wor...
A method for the measurement of temperatures and densities in rarefied flow is the Laser Induced Flu...
International audienceFor the first time, absolute densities of atomic nitrogen in its ground state ...
Laser-induced fluorescence (LIF) is used to determine the density and rotational temperature of the ...
Laser induced fluorescence (LIF) measurements of nitric oxide (NO) are performed in an atmospheric p...
The effluent of an RF argon atmospheric pressure plasma jet, the so-called kinpen, is investigated w...
Atmospheric pressure plasma jets (APPJs) are plasmas produced at an electrode inserted in a tube thr...
In this paper we present a method to automatically fit the temperature of a rotational spectrum. It ...
A time modulated RF atmospheric pressure plasma jet, operated in ambient air with a flow of argon wi...
In this paper, the ground state OH density is measured in high pressure plasma by laser-induced fluo...
International audienceThis paper deals high temperature chemistry of air in interaction with a metal...
This paper presents optical imaging and optical emission spectroscopy (OES) data of an atmospheric-p...
Non-equilibrium atmospheric pressure plasma jets (APPJs) have been extensively investigated during t...
This thesis presents a novel, asymmetrical atmospheric pressure plasma jet, that uses air as its wor...
A method for the measurement of temperatures and densities in rarefied flow is the Laser Induced Flu...
International audienceFor the first time, absolute densities of atomic nitrogen in its ground state ...