arXiv · physics/9804008
UV continuum emission and diagnostics of hydrogen-containing non-equilibrium plasmas
Abstract
For the first time the emission of the radiative dissociation continuum of the hydrogen molecule ($a^{3}Σ_{g}^{+} \to b^{3}Σ_{u}^{+}$ electronic transition) is proposed to be used as a source of information for the spectroscopic diagnostics of non-equilibrium plasmas. The detailed analysis of excitation-deactivation kinetics, rate constants of various collisional and radiative transitions and fitting procedures made it possible to develop two new methods of diagnostics of: (1) the ground $X^{1}Σ_{g}^{+}$ state vibrational temperature $T_{\text{vib}}$ from the relative intensity distribution, and (2) the rate of electron impact dissociation $(d[\mbox{H$_{2}$}]/dt)_{\text{diss}}$ from the absolute intensity of the continuum. A known method of determination of $T_{\text{vib}}$ from relative intensities of Fulcher-$α$ bands was seriously corrected and simplified due to the revision of $d \to a$ transition probabilities and cross sections of $d \gets X$ electron impact excitation. General considerations are illustrated with examples of experiments in pure hydrogen capillary-arc and H$_{2}$+Ar microwave discharges.
Explore related subjects
Keep this discovery
M. Käning, B. P. Lavrov, A. S. Melnikov, J. Röpcke. 1998-11-20. UV continuum emission and diagnostics of hydrogen-containing non-equilibrium plasmas. https://doi.org/10.1103/physreve.59.3526
Cite the original work for its findings. Save a collection to share your selection of sources.