Frequency variation in micro atmospheric pressure plasma jets driven by tailored voltage waveforms
POSTER
Abstract
Radio frequency driven micro atmospheric pressure plasma jets ($\mu $-APPJs) are often used as efficient sources of reactive species at low temperatures for, e.g. biomedical applications and surface modifications. In the present work, we perform a systematic investigation of the electron heating dynamics and the generation of selected species in \textmu -APPJs driven by Voltage Waveform Tailoring (VWT) as a function of the fundamental frequency, the number of consecutive harmonics, the reactive gas admixtures (He/N$_{\mathrm{2}})$ and the peak-to-peak voltage amplitude based on experiments and kinetic particle-in-cell/Monte Carlo collision simulations. Our results demonstrate the potential of VWT to optimize and control the generation of selected reactive particle species.
Authors
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Lena Bischoff
Ruhr University Bochum, Germany
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Gerrit Huebner
Ruhr University Bochum, Germany
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Ihor Korolov
Ruhr University Bochum, Germany
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Zoltan Donko
Hungarian Academy of Sciences, Budapest, Hungary
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Yue Liu
Brandenburg University of Technology, Brandenburg University of Technology, Cottbus, Germany
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Thomas Mussenbrock
Brandenburg University of Technology, Cottbus, Germany
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Julian Schulze
Ruhr-University Bochum, Ruhr-University Bochum, Germany, 2Department of Electrical Engineering, Ruhr University Bochum, Bochum, Germany, Ruhr University Bochum, Germany, West Virginia University, USA, West Virginia University, Ruhr University Bochum, Ruhr University Bochum, Germany