Streamer-induced kinetics of excited states in pure N2: II. Formation of N2(B3Πg, v=0-21) through analysis of emission produced by the first positive system

Petr Bílek, T. C. Dias, V. Prukner, V. Guerra, Milan Šimek
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Abstract

Vibrational distributions of electronically excited states of N2 obtained through dipole-allowed radiative transitions provide an important tool to study the kinetics of non-equilibrium plasmas under various discharge conditions. In this work, we report, for the first time, streamer-induced visible/near-infrared-red emission spectra developing during the first hundred nanoseconds after the initiation of the discharge. Emission through the first positive system of N2 was acquired in 500 - 1100 nm range, which allows a complete analysis of the N2(B3Πg, v=0-21) vibrational manifold. The investigated evolution of the vibrational distribution of the N2(B3Πg, v=0-21) state at the centre of the gap corresponds to the transition of the streamer head and the subsequent decay of the streamer channel. We show that the vibrational distribution characterising streamer head is determined by Franck-Condon factors, while during streamer relaxation, it is influenced by the complex interaction between triplet excited states of N2. Additionally, the observed N2(B3Πg, v=13-21) vibrational levels are likely produced by the interaction of high vibrational levels of N2(W3Δu, B’3Σu -, B3Πg) with N2(C3Πu) state. We also provide a detailed kinetic scheme for modelling vibrationally-resolved N2(B3Πg) state and compare model results with experimental outcomes.
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纯净 N2 中激发态的流线诱导动力学:II.通过分析第一个正向系统产生的发射来形成 N2(B3Πg, v=0-21)
通过偶极子允许的辐射跃迁获得的 N2 电子激发态的振动分布为研究各种放电条件下非平衡态等离子体的动力学提供了重要工具。在这项工作中,我们首次报告了在放电开始后的前一百纳秒内形成的流束诱导可见/近红外发射光谱。在 500 - 1100 nm 范围内获得了通过 N2 的第一个正向系统的发射,从而对 N2(B3Πg, v=0-21) 振动流形进行了完整的分析。所研究的 N2(B3Πg,v=0-21)态在间隙中心的振动分布演变对应于流线头的过渡和随后流线通道的衰减。我们的研究表明,幡头的振动分布特征是由弗兰克-康顿因子决定的,而在幡弛豫期间,它受到 N2 三重激发态之间复杂相互作用的影响。此外,观察到的 N2(B3Πg,v=13-21)振动级很可能是由 N2(W3Δu,B'3Σu -,B3Πg)的高振动级与 N2(C3Πu)状态的相互作用产生的。我们还为模拟振动分辨 N2(B3Πg)态提供了详细的动力学方案,并将模型结果与实验结果进行了比较。
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