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Characteristics of surface glow discharge in a low-pressure supersonic gas flow

机译:低压超声气流中的表面辉光放电特性

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Kinetic particle-in-cell simulations are performed to examine the characteristics of the surface glow discharge in a supersonic nitrogen flow. The gas pressure is varied between 100 and 500 mTorr; the applied voltage, between -500 and -1000 V. The analysis focuses on the effect of boundary conditions at the dielectric barrier surrounding the electrodes on the electron energy distribution function. The potential on the dielectric is found by using a local balance condition for the electron and ion currents to the surface. The results of self-consistent simulations show that a negative potential on the dielectric substantially reduces the rate of high-energy electron loss from the bulk plasma and thus significantly changes the ionization rate, as well as plasma parameters and configuration.
机译:进行了动力学粒子模拟,以检查超声速氮气流中表面辉光放电的特性。气压在100至500毫托之间变化;施加的电压介于-500和-1000 V之间。该分析着重于电极周围介电势垒的边界条件对电子能量分布函数的影响。通过使用到达表面的电子和离子电流的局部平衡条件,可以找到电介质上的电势。自洽模拟的结果表明,电介质上的负电势大大降低了从体等离子体中流失的高能电子的速率,从而显着改变了电离速率以及等离子体参数和配置。

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