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LIF spectroscopy of OH radicals and the electron temperature in the effluent of atmospheric RF JET in Ar-H2O mixtures

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Organization
Abstract
The measurements of the spatial distribution of OH radicals and electon temperature in an atmospheric RF Ar-H2O plasma jet is carried out by means of laser induce flourescence (LIF) and absolute line intensity (ALI)measurements. Plasma with 0.3% H2O is characterized by highest LIF signal where, accordingly, the second peak of Te appears around the same water content. The dominant radical production mechanism is dissociation electron-ion recombination in the atmospheric RF plasma jet.
Keywords
LIF spectroscopy,OH radicals,electron temperature

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Chicago
Li, Li, Anton Nikiforov, Qing Xiong, Nikolay Britun, Rony Snyders, Xinpei Lu, and Christophe Leys. 2012. “LIF Spectroscopy of OH Radicals and the Electron Temperature in the Effluent of Atmospheric RF JET in Ar-H2O Mixtures.” In XXI Europhysics Conference on the Atomic and Molecular Physics of Ionized Gases, Abstracts.
APA
Li, Li, Nikiforov, A., Xiong, Q., Britun, N., Snyders, R., Lu, X., & Leys, C. (2012). LIF spectroscopy of OH radicals and the electron temperature in the effluent of atmospheric RF JET in Ar-H2O mixtures. XXI Europhysics Conference on the Atomic and Molecular Physics of Ionized Gases, Abstracts. Presented at the XXI Europhysics Conference on the Atomic and Molecular Physics of Ionized Gases (ESCAMPIG - 2012).
Vancouver
1.
Li L, Nikiforov A, Xiong Q, Britun N, Snyders R, Lu X, et al. LIF spectroscopy of OH radicals and the electron temperature in the effluent of atmospheric RF JET in Ar-H2O mixtures. XXI Europhysics Conference on the Atomic and Molecular Physics of Ionized Gases, Abstracts. 2012.
MLA
Li, Li, Anton Nikiforov, Qing Xiong, et al. “LIF Spectroscopy of OH Radicals and the Electron Temperature in the Effluent of Atmospheric RF JET in Ar-H2O Mixtures.” XXI Europhysics Conference on the Atomic and Molecular Physics of Ionized Gases, Abstracts. 2012. Print.
@inproceedings{2988183,
  abstract     = {The measurements of the spatial distribution of OH radicals and electon temperature in an atmospheric RF Ar-H2O plasma jet is carried out by means of laser induce flourescence (LIF) and absolute line intensity (ALI\unmatched{ff09}measurements. Plasma with 0.3\% H2O is characterized by highest LIF signal where, accordingly, the second peak of Te appears around the same water content. The dominant radical production mechanism is dissociation electron-ion recombination in the atmospheric RF plasma jet.},
  author       = {Li, Li and Nikiforov, Anton and Xiong, Qing and Britun, Nikolay and Snyders, Rony and Lu, Xinpei and Leys, Christophe},
  booktitle    = {XXI Europhysics Conference on the Atomic and Molecular Physics of Ionized Gases, Abstracts},
  keyword      = {LIF spectroscopy\unmatched{ff0c}OH radicals\unmatched{ff0c}electron temperature},
  language     = {eng},
  location     = {Viana do Castelo, Portugal},
  title        = {LIF spectroscopy of OH radicals and the electron temperature in the effluent of atmospheric RF JET in Ar-H2O mixtures},
  year         = {2012},
}