首页> 外文会议>2010 Abstracts IEEE International Conference on Plasma Science >Diode laser absorption and emission spectroscopy of a streamer discharge in an atmospheric pressure plasma jet
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Diode laser absorption and emission spectroscopy of a streamer discharge in an atmospheric pressure plasma jet

机译:大气压等离子体射流中流光放电的二极管激光吸收和发射光谱

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Research into atmospheric pressure plasma jets (APPJs) that are initiated via a self-sustaining streamer discharge has recently been driven by both their potential for applications to nonthermal material processing, and fundamental questions regarding the basic discharge mechanisms that drive this remarkably stable atmospheric pressure discharge. We have characterized a streamer-initiated atmospheric pressure plasma jet in a 5% Ar / 95% He carrier gas flowing into ambient air using tunable diode laser absorption spectroscopy together with photomultiplier-coupled optical emission spectroscopy and current/voltage measurements. Improvements in the stability of this APPJ have allowed us to isolate the streamer discharge component with a higher precision than we have previously reported, as the shot-to-shot jitter is now comparable to the optical detector bandwidths. This APPJ configuration is similar to that used in previous workl, with the difference that only a single ring electrode is used here. Optical transitions from He, Ar, and various air species were used to characterize the spatiotemporal evolution of the discharge. The optical detector was aligned with the output from an 811.53 nm tunable diode laser that was used to measure the line integrated density of the Ar ls5 metastable.
机译:通过自持式流光放电引发的大气压等离子体射流(APPJ)的研究最近受到其在非热材料加工中的应用潜力以及有关驱动这种显着稳定的大气压放电的基本放电机理的基本问题的推动。我们使用可调谐二极管激光吸收光谱,光电倍增管耦合光发射光谱和电流/电压测量,以流态引发的大气压等离子体射流为特征,该等离子体射流是在5%Ar / 95%He载气流入环境空气中的。这种APPJ稳定性的改进使我们能够以比以前报告的精度更高的精度隔离拖缆放电分量,因为逐点抖动现在可与光学检测器带宽相媲美。这种APPJ配置类似于先前的工作中使用的配置,不同之处在于,此处仅使用单个环形电极。来自He,Ar和各种空气物种的光学跃迁用于表征放电的时空演化。光学检测器与811.53 nm可调二极管激光器的输出对准,该激光器用于测量Ar ls5亚稳态的线积分密度。

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