Abstract. Breakdown and streamer formation is simulated in atmospheric pressure nitrogen for a 2-D planar electrode system. A PIC code with multigrid potential solver is used to simulate the evolution of the non-equilibrium ionization front on sub-nanosecond timescales. The ion and electron energy distributions are computed, accounting for including inelastic scattering of electrons, and collisionally excited metastable production and ionization.Of particular interest is the increased production of metastable and low-energy ions and electrons when the applied field is reversed during the progress of the ionization front, giving insight into the improved species yields in nanosecond pulsed systems.
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