Time evolution of NO X <sup>2</sup>Π (ground), A <sup>2</sup>Σ<sup>+</sup> state and O <sup>3</sup>P atomic ground state density in downstream of a nitrogen-oxygen pulsed microwave surfaguide discharge
ORAL
Abstract
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Publication: [1] Bahnamiri, O. S., Verheyen, C., Snyders, R., Bogaerts, A., & Britun, N. (2021). Nitrogen fixation in pulsed microwave discharge studied by infrared absorption combined with modelling. In Plasma Sources Science and Technology (Vol. 30, Issue 6, p. 065007). IOP Publishing.<br>[2]* Bahnamiri, O. S., Manaigo, F., Chatterjee, A., Snyders, R., & Britun, N. NO and N2 ro-vibrational dynamics revealed during nitrogen fixation in microwave low-temperature plasma<br>[3]* Chatterjee, A., Bahnamiri, O. S., Leonova, K., Britun, N. & Snyders, R. Time evolution of NO and O atomic ground state in a low pressure N2-O2 surfaguide pulsed microwave discharge probed by laser induced fluorescence<br>*future publications
Presenters
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Abhyuday Chatterjee
University of Mons
Authors
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Abhyuday Chatterjee
University of Mons
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Omid Samadi
University of Mons
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Kseniia Leonova
University of Mons
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Nikolay Britun
Nagoya University, Center for Low-temperature Plasma Sciences, Nagoya University, Chikusa-ku, Nagoya 464-8603, Japan.
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Rony Snyders
University of Mons, 1. Chimie des Interactions Plasma-Surface (ChIPS), CIRMAP, Universit´e de Mons, 7000, Mons, Belgium 2. Materia Nova Research Center, Parc Initialis, 7000, Mons, Belgium.