Temporally resolved imaging on quenching and re-ignition of nanosecond underwater discharge

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Abstract

This paper presents the temporally resolved images of plasma discharge in de-ionized water. The discharge was produced by high voltage pulses with 0.3 ns rise time and 10 ns duration. The temporal resolution of the imaging system was one nanosecond. A unique three-stage process, including a fast ignition at the leading edge of the pulse, quenching at the plateau of the pulse, and self re-ignition at the trailing edge of the pulse, was observed in a single pulse cycle. The maximum measured propagation velocity of the plasma discharge was about 1000 km/s. The possibility of direct ionization in water under high reduced electric field conditions was discussed. © 2012 Copyright 2012 Author(s). This article is distributed under a Creative Commons Attribution 3.0 Unported License.

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Yang, Y., Cho, Y. I., & Fridman, A. (2012, December 1). Temporally resolved imaging on quenching and re-ignition of nanosecond underwater discharge. AIP Advances. American Institute of Physics. https://doi.org/10.1063/1.4769080

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