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Rapid formation of electric field profiles in repetitively pulsed high-voltage high-pressure nanosecond discharges

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Published 26 January 2010 2010 IOP Publishing Ltd
, , Citation Tsuyohito Ito et al 2010 J. Phys. D: Appl. Phys. 43 062001 DOI 10.1088/0022-3727/43/6/062001

0022-3727/43/6/062001

Abstract

Rapid formation of electric field profiles has been observed directly for the first time in nanosecond narrow-gap parallel-plate discharges at near-atmospheric pressure. The plasmas examined here are of hydrogen, and the field measurement is based on coherent Raman scattering (CRS) by hydrogen molecules. Combined with the observation of spatio-temporal light emission profiles by a high speed camera, it has been found that the rapid formation of a high-voltage thin cathode sheath is accompanied by fast propagation of an ionization front from a region near the anode. Unlike well-known parallel-plate discharges at low pressure, the discharge formation process at high pressure is almost entirely driven by electron dynamics as ions and neutral species are nearly immobile during the rapid process.

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10.1088/0022-3727/43/6/062001