Features of the cathode plasma formation at the initial stage of a nanosecond spark discharge in air

Nanosecond discharges at atmospheric pressure have a wide range of applications. The features of a nanosecond spark discharge formation strongly depend on the discharge gap geometry and the applied voltage. The present paper contains the results of near-electrode processes investigation at the initi...

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Veröffentlicht in:Europhysics letters 2020-06, Vol.130 (6), p.65002
Hauptverfasser: Almazova, K. I., Belonogov, A. N., Borovkov, V. V., Kurbanismailov, V. S., Khalikova, Z. R., Ragimkhanov, G. B., Tereshonok, D. V., Trenkin, A. A.
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Sprache:eng
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Zusammenfassung:Nanosecond discharges at atmospheric pressure have a wide range of applications. The features of a nanosecond spark discharge formation strongly depend on the discharge gap geometry and the applied voltage. The present paper contains the results of near-electrode processes investigation at the initial stage of a spark discharge in air in the pin-to-plate geometry. Extra-high electron concentration in the range of was obtained based on the Mach-Zehnder interferometer after breakdown near the surface of a flat cathode. It is confirmed that the discharge channel is a multitude of microchannels that close the discharge gap. Analysis of a flat electrode surface after breakdown shows that the channel binding region is a cluster of microcraters with diameter from 5 to . A model for the gas dynamics processes at the initial stage of a nanosecond spark discharge is proposed.
ISSN:0295-5075
1286-4854
1286-4854
DOI:10.1209/0295-5075/130/65002