2012
DOI: 10.1002/ctpp.201200048
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Dynamics and Electronegativity of Oxygen RF Plasmas

Abstract: Key words Low pressure rf discharge, oxygen plasma, electron and negative ion density, plasma instability.The capacitively coupled radio frequency plasma at 13.56 MHz in oxygen was systematically studied by 160 GHz Gaussian beam microwave interferometry at high temporal resolution (200 ns) and simultaneous laser photodetachment for electron and negative ion density analysis. Additionally, spatio-temporally resolved electric probe measurements were performed for comparison with microwave interferometry. A high … Show more

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Cited by 30 publications
(26 citation statements)
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References 39 publications
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“…In order to control the microdischarge the implementation of a third electrode is foreseen, a so-called sliding discharge [41]. In particular, it is planned to investigate the role of negative ions by the laser photodetachment technique [42].…”
Section: Discussionmentioning
confidence: 99%
“…In order to control the microdischarge the implementation of a third electrode is foreseen, a so-called sliding discharge [41]. In particular, it is planned to investigate the role of negative ions by the laser photodetachment technique [42].…”
Section: Discussionmentioning
confidence: 99%
“…During the mode transition the positive ion saturation current increases over one order of magnitude from The admixture of oxygen completely changes the whole discharge and these complex plasmas consist of electrons, multiple negative and positive ions, neutral transient and stable molecules. Further, the negative ions can strongly change the plasma dynamics as well as the plasma boundary sheath [51]. In particular, the collisional detachment of the negative ions with metastable oxygen molecules is an essential electron sources [52].…”
Section: Mode Transition and Plasma Parametersmentioning
confidence: 99%
“…The following article by Küllig et al [8] concerns the dynamics and electronegativity of a low-pressure capacitively coupled oxygen rf plasma investigated by experiments and simulations. Two operation modes of the oxygen rf plasma at low and high electronegativity, mainly controlled by the rf power, have been found by detailed analysis of the electron and negative ion density as well as the rf phase resolved optical emission intensity.…”
Section: Dynamics Of Plasmas and Plasma Sheaths Plasma-surface Intermentioning
confidence: 99%