Measurements of electric field in high-pressure plasmas by ps and ns e-fish generation

K. Orr, Y. Tang, M. Simeni Simeni, D. van den Bekerom, T. Butterworth, T. Orriere, D. Z. Pai, D. A. Lacosle, M. S. Cha, I. V. Adamovich

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Temporal and spatial distributions of the electric field in an atmospheric pressure, quasi-two-dimensional, ns pulse helium plasma jet impinging on liquid water are measured by ps Electric Field Induced Second Harmonic (EFISH) generation. The measurements have been done using a laser sheet and a focused laser beam. Absolute calibration is obtained by measuring a known Laplacian electric field distribution for the same geometry and at the same flow conditions. The results show non-monotonous electric field distribution across the jet, with two maxima produced by the surface ionization waves propagating over water. Considerable electric field enhancement is detected near the surface. Residual charge accumulation on the water surface is detected only in the negative polarity pulse discharge. The results provide insight into the charge species kinetics and transport in atmospheric pressure plasma jets, and produce data for detailed validation of high-fidelity kinetic models. EFISH generation using a ns pulse duration laser is employed for time-resolved measurements of the axial and transverse electric field in a pin-to-pin ns pulse discharge in ambient air, at atmospheric pressure and at 2 bar. The results demonstrate that the time-varying electric field can be measured accurately over the duration of the laser pulse, 15-20 ns long, with the temporal resolution limited by the response time of the detector. Each data set provides the time-accurate electric field over a period of up to 10 ns. Time-resolved electric fields over longer time periods are obtained by overlapping the individual data sets. Absolute calibration is obtained by measuring the Laplacian field distribution in the discharge gap before breakdown, taking into account the residual charge accumulation on the surface of the dielectric encapsulating the grounded electrode. The results demonstrate the feasibility of ns EFISH measurements in high-pressure transient plasmas, using widely available ns pulse duration Nd:YAG lasers.

源语言英语
主期刊名AIAA Scitech 2020 Forum
出版商American Institute of Aeronautics and Astronautics Inc, AIAA
1-24
页数24
ISBN(印刷版)9781624105951
DOI
出版状态已出版 - 2020
已对外发布
活动AIAA Scitech Forum, 2020 - Orlando, 美国
期限: 6 1月 202010 1月 2020

出版系列

姓名AIAA Scitech 2020 Forum
1 PartF

会议

会议AIAA Scitech Forum, 2020
国家/地区美国
Orlando
时期6/01/2010/01/20

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