4.6 Article

Effect of pulse polarity on the temporal and spatial emission of an atmospheric pressure helium plasma jet

Journal

PLASMA SOURCES SCIENCE & TECHNOLOGY
Volume 25, Issue 1, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0963-0252/25/1/015020

Keywords

microsecond pulse; positive- and negative-polarity pulses; temporal-spatial distribution; plasma emission plume

Funding

  1. National Natural Science Foundation of China [51222701, 51477164]
  2. National Basic Research Program of China [2014CB239505-3]

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A single needle-electrode plasma jet driven by a home-made microsecond pulse power supply is studied. The electrical characteristics and optical emissions of the plasma jets driven by positive- and negative-polarity pulses are compared. With the same magnitude of applied voltage, the plasma jet driven by positive pulses shows a higher discharge current, a higher optical emission intensity and travels to a longer distance. The temporal-spatially resolved He (706.5 nm), N-2 (337.1 nm) and N-2(+) (391.4 nm) emissions behave differently in the plasma jets driven by different polarity pulses: They appear to be discrete emission packets in the positive plasma jet, but continuous emission in the negative plasma jet (under the time resolution in this study). The emission front propagates at a faster speed in the positive plasma jet than in the negative plasma jet. The different behavior of the plasma jets is attributed to the electric field distribution under different polarity pulses.

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