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@article{1067790, author = {Skácelová, Dana and Slavíček, Pavel}, article_number = {11}, doi = {http://dx.doi.org/10.1109/TPS.2012.2213275}, keywords = {Atmospheric-pressure plasma; frequency modulation; plasma diagnostics; plasma source; spectroscopy}, language = {eng}, issn = {0093-3813}, journal = {IEEE Transactions on Plasma Science}, title = {Characterization of plasma pencil pulsed discharge}, url = {http://ieeexplore.ieee.org/xpl/articleDetails.jsp?tp=&arnumber=6310068&contentType=Early+Access+Articles&searchField%3DSearch_All%26queryText%3DCharacterization+of+plasma+pencil+pulsed+discharge}, volume = {40}, year = {2012} }
TY - JOUR ID - 1067790 AU - Skácelová, Dana - Slavíček, Pavel PY - 2012 TI - Characterization of plasma pencil pulsed discharge JF - IEEE Transactions on Plasma Science VL - 40 IS - 11 SP - 2920-2924 EP - 2920-2924 SN - 00933813 KW - Atmospheric-pressure plasma KW - frequency modulation KW - plasma diagnostics KW - plasma source KW - spectroscopy UR - http://ieeexplore.ieee.org/xpl/articleDetails.jsp?tp=&arnumber=6310068&contentType=Early+Access+Articles&searchField%3DSearch_All%26queryText%3DCharacterization+of+plasma+pencil+pulsed+discharge N2 - In this paper, the optical emission spectroscopy (OES) of plasma pencil generated at atmospheric pressure with pulsed voltage was studied. Single-electrode and two-electrode configurations to approximate the conditions during various material treatment have been compared. By means of time-resolved OES, particle behavior during pulse duration, particularly atomic and molecular components represented by Ar lines and OH band, has been studied. The axial distribution of the rotational and the electron temperature showed that the presence of conductive material in plasma jet increased the rotational and electron temperature and even influenced the particle behavior inside the plasma nozzle. Furthermore, it was found that rotational temperature can be easily controlled by the duty cycle. ER -
SKÁCELOVÁ, Dana a Pavel SLAVÍČEK. Characterization of plasma pencil pulsed discharge. \textit{IEEE Transactions on Plasma Science}. 2012, roč.~40, č.~11, s.~2920-2924. ISSN~0093-3813. Dostupné z: https://dx.doi.org/10.1109/TPS.2012.2213275.
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