Collisional effects can have strong influences on the population densities of excited states in gas discharges at elevated pressure. The knowledge of the pertinent collisional coefficient describing the depopulation of a specific level (quenching coefficient) is, therefore, important for plasma diagnostics and simulations. Phase resolved optical emission spectroscopy (PROES) applied to a capacitively coupled rf discharge excited with a frequency of 13.56 MHz in hydrogen allows the measurement of quenching coefficients for emitting states of various species, particularly of noble gases, with molecular hydrogen as a collision partner. Quenching coefficients can be determined subsequent to electron-impact excitation during the short field reve...
Population models are a prerequisite for performing qualitative analysis of population densities mea...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
Author Institution: Department of Chemistry and Center for Molecular Electronics, University of Miss...
Phase resolved optical emission spectroscopy (PROES) bears considerable potential for diagnostics of...
Atomic hydrogen lines and line ratios are being used for diagnostics of technical plasmas in hydroge...
In this paper, laser collisional induced fluorescence (LCIF) is used to probe resonant excitation tr...
The electron energy distribution function (EEDF) in a microwave discharge in hydrogen was calculated...
The reliable measurement of the electron energy distribution function (EEDF) of plasmas is one of th...
In this contribution, optical emission spectroscopy is evaluated and thoroughly analysed as a diagno...
Optical emission spectroscopy (OES) can be used to map the electron energy distribution of hydrogen ...
In this contribution, optical emission spectroscopy is evaluated and thoroughly analysed as a diagno...
Fluorescence spectroscopy is a powerful tool for obtaining information on microscopic processes in d...
Population models are a prerequisite for performing qualitative analysis of population densities mea...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
Author Institution: Department of Chemistry and Center for Molecular Electronics, University of Miss...
Phase resolved optical emission spectroscopy (PROES) bears considerable potential for diagnostics of...
Atomic hydrogen lines and line ratios are being used for diagnostics of technical plasmas in hydroge...
In this paper, laser collisional induced fluorescence (LCIF) is used to probe resonant excitation tr...
The electron energy distribution function (EEDF) in a microwave discharge in hydrogen was calculated...
The reliable measurement of the electron energy distribution function (EEDF) of plasmas is one of th...
In this contribution, optical emission spectroscopy is evaluated and thoroughly analysed as a diagno...
Optical emission spectroscopy (OES) can be used to map the electron energy distribution of hydrogen ...
In this contribution, optical emission spectroscopy is evaluated and thoroughly analysed as a diagno...
Fluorescence spectroscopy is a powerful tool for obtaining information on microscopic processes in d...
Population models are a prerequisite for performing qualitative analysis of population densities mea...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
Author Institution: Department of Chemistry and Center for Molecular Electronics, University of Miss...