Dark-to-arc transition in field emission dominated atmospheric microdischarges

作者:Tholeti Siva Sashank*; Semnani Abbas; Peroulis Dimitrios; Alexeenko Alina A
来源:Physics of Plasmas, 2015, 22(8): 083508.
DOI:10.1063/1.4928566

摘要

We study the voltage-current characteristics of gas discharges driven by field emission of electrons at the microscale. Particle-in-cell with Monte Carlo collision calculations are first verified by comparison with breakdown voltage measurements and then used to investigate atmospheric discharges in nitrogen at gaps from 1 to 10 mu m. The results indicate the absence of the classical glow discharge regime because field electron emission replaces secondary electron emission as the discharge sustaining mechanism. Additionally, the onset of arcing is significantly delayed due to rarefied effects in electron transport. While field emission reduces the breakdown voltage, the power required to sustain an arc of the same density in microgaps is as much as 30% higher than at macroscale.

  • 出版日期2015-8