DocumentCode :
14895
Title :
Negative Ion Generation and Isotopic Effect in Electron Cyclotron Resonance Plasma
Author :
Chacon Velasco, Angel Jose ; Chacon Parra, Aura Lucia ; Alfonso Pacheco Serrano, William
Author_Institution :
Pedagogical & Technol. Univ. of Colombia, Tunja, Colombia
Volume :
43
Issue :
5
fYear :
2015
fDate :
May-15
Firstpage :
1729
Lastpage :
1732
Abstract :
The impact of the thermoelectron emission upon the efficiency of negative hydrogen ion production in an electron cyclotron resonance source with driven plasma rings is studied. The obtained data demonstrate that the negative ion production is realized in two stages. At the first stage, the hydrogen and deuterium molecules are excited to vibrational states and high-lying Rydberg levels in collisions with the plasma electrons in the discharge volume. The second stage leads to the negative ion production through the process of dissociative attachment of low-energy electrons by the excited molecules. The low-energy electrons are originated due to a bombardment of the plasma electrode by ions of a driven plasma ring and the thermoemission from heated tungsten filaments. The experiments prove that the negative hydrogen ion generation occurs predominantly in a plasma electrode superficial layer filled with thermoelectrons. The negative ion generation through the vibrational excitation channel requires the isotope effect that appears due to the difference in the velocities of the vibrational movement of the nuclei in light and heavy molecular isotopes. From the experimental data for the negative ion generation rate, it follows that the main channel for H- and D- ion production involves the process of high Rydberg states excitation of H2 and D2 molecules.
Keywords :
Rydberg states; deuterium; electron attachment; electron emission; electron impact dissociation; hydrogen; ion sources; isotope effects; negative ions; plasma collision processes; plasma sources; vibrational states; D2; H2; Rydberg state excitation; deuterium molecules; discharge volume; dissociative attachment; electron cyclotron resonance plasma source; excited states; high-lying Rydberg levels; hydrogen molecules; isotopic effect; molecular isotopes; negative hydrogen ion generation; plasma electrode; plasma electron collisions; plasma rings; thermoelectron emission; tungsten filaments; vibrational excitation channel; vibrational states; Discharges (electric); Electrodes; Heating; Hydrogen; Ions; Plasmas; Production; Beams; cyclotron resonance; deuterium; electron beams; hydrogen; ions; isotopes; particle beam dynamics; particle beams; thermionic emission; thermionic emission.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2015.2413904
Filename :
7079524
Link To Document :
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