We present a new approach to measure population densities of Ar I metastable and resonant excited states in low temperature Ar plasmas at pressures higher than 1 Torr. This approach combines the time resolved laser induced fluorescence technique with the kinetic model of Ar. The kinetic model of Ar is based on calculating the population rates of metastable and resonant levels by including contributions from the processes that affect population densities of Ar I excited states. In particular, we included collisional quenching processes between atoms in the ground state and excited states, since we are investigating plasma at higher pressures. We also determined time resolved population densities of Ar I 2 p excited states by employing optica...
Absorption spectroscopy was used to determine the density of argon atoms in the first excited state ...
We have carried out laser-induced fluorescence experiments in the argon plasma of a hollow cathode a...
Laser optogalvanic (LOG) signals at 667.7, 751.5, and 696.5 nm from the 3 P 1 and 3 P 2 levels of Ar...
We present a new approach to measure population densities of Ar I metastable and resonant excited st...
The reaction kinetics in the excitation space of Ar is explored by means of Laser Induced Fluorescen...
In this contribution we report the application of time resolved laser induced fluorescence (tr-LIF) ...
In this contribution we report the application of time resolved laser induced fluorescence (tr-LIF) ...
Laser induced fluorescence has been used to measure the spatial distribution of the two lowest energ...
In this contribution we report the application of time resolved laser induced fluorescence (tr-LIF) ...
International audienceTunable diode laser absorption spectroscopy was used to record the space-and t...
International audienceTunable diode laser absorption spectroscopy is used for recording the spectral...
The populations of the excited argon 3s23p54s (s5 only) and 3s23p54p configurations in a 10 W radio ...
In this paper, laser collisional induced fluorescence (LCIF) is used to probe resonant excitation tr...
International audienceTunable diode laser absorption spectroscopy is used for recording the spectral...
Characterization of the excited state argon population in an argon-helium discharge is of crucial im...
Absorption spectroscopy was used to determine the density of argon atoms in the first excited state ...
We have carried out laser-induced fluorescence experiments in the argon plasma of a hollow cathode a...
Laser optogalvanic (LOG) signals at 667.7, 751.5, and 696.5 nm from the 3 P 1 and 3 P 2 levels of Ar...
We present a new approach to measure population densities of Ar I metastable and resonant excited st...
The reaction kinetics in the excitation space of Ar is explored by means of Laser Induced Fluorescen...
In this contribution we report the application of time resolved laser induced fluorescence (tr-LIF) ...
In this contribution we report the application of time resolved laser induced fluorescence (tr-LIF) ...
Laser induced fluorescence has been used to measure the spatial distribution of the two lowest energ...
In this contribution we report the application of time resolved laser induced fluorescence (tr-LIF) ...
International audienceTunable diode laser absorption spectroscopy was used to record the space-and t...
International audienceTunable diode laser absorption spectroscopy is used for recording the spectral...
The populations of the excited argon 3s23p54s (s5 only) and 3s23p54p configurations in a 10 W radio ...
In this paper, laser collisional induced fluorescence (LCIF) is used to probe resonant excitation tr...
International audienceTunable diode laser absorption spectroscopy is used for recording the spectral...
Characterization of the excited state argon population in an argon-helium discharge is of crucial im...
Absorption spectroscopy was used to determine the density of argon atoms in the first excited state ...
We have carried out laser-induced fluorescence experiments in the argon plasma of a hollow cathode a...
Laser optogalvanic (LOG) signals at 667.7, 751.5, and 696.5 nm from the 3 P 1 and 3 P 2 levels of Ar...