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- W2063329611 abstract "The potential of employing nitric oxide (NO) as a spectrometric probe to monitor the evolution of free electrons is explored in this article for conditions occurring during the propagation of a positive streamer in atmospheric pressure nitrogen. An extension of the spectroscopic approach, based on a comparison of the relative emission intensity of electronic states with different excitation thresholds is proposed, considering typical space and timescales of streamers. Basic characteristics of electron-impact excitation processes are evaluated for N2(X?1?g+), N2(C?3?u) and NO(A?2?+) electronic states utilizing recently published cross section data. Emission of the N2 second positive (2.PG) and NO-? systems is inspected by means of a simple collisional-radiative model considering energetic Maxwellian electrons as the primary excitation source of involved electronic states. A simple tool for evaluating `spectroscopic Maxwellian electron temperature' from relative intensities of the N2 2.PG and NO-? systems emissions is provided." @default.
- W2063329611 created "2016-06-24" @default.
- W2063329611 creator A5054065305 @default.
- W2063329611 date "2002-08-07" @default.
- W2063329611 modified "2023-10-12" @default.
- W2063329611 title "The modelling of streamer-induced emission in atmospheric pressure, pulsed positive corona discharge: N2 second positive and NO-$gamma$ systems" @default.
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- W2063329611 doi "https://doi.org/10.1088/0022-3727/35/16/311" @default.
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