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On the discharge parameters of a glow mode DBD

机译:关于辉光模式DBD的放电参数

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摘要

In this paper we report on the behavior of a glow mode pulsed barrier discharge working at different gas pressure (25–760 Torr) in He and He+O2. The experimental set-up consists of a plane-parallel geometry of DBD system, excited by positive monopolar voltage pulses. The discharge properties were characterized by electrical measurements and emission spectroscopy. Our investigations showed that the discharge consists of two current pulses, with different polarities, corresponding to each voltage pulse. The main results referred to the effect of pressure and oxygen percentage on the discharge parameters. The temporally resolved spectroscopy of the DBD plasma working at different pressure pointed out the differences between the discharge mechanism at low pressure and that closed to atmospheric pressure. At low pressure (25 Torr), the oxygen atoms are efficiently created for about 2% of oxygen added to gas mixture.
机译:在本文中,我们报告了在He和He + O 2 的不同气压(25–760 Torr)下工作的辉光模式脉冲势垒放电的行为。实验设置由DBD系统的平面平行几何结构组成,并由正单极电压脉冲激发。放电性能通过电学测量和发射光谱学表征。我们的研究表明,放电由与每个电压脉冲对应的两个极性不同的电流脉冲组成。主要结果涉及压力和氧气百分比对放电参数的影响。 DBD等离子体在不同压力下的时间分辨光谱表明,低压下的放电机理与接近大气压的放电机理之间存在差异。在低压(25 Torr)下,大约有2%的氧气被添加到混合气体中,从而有效地产生了氧原子。

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