首页> 外文会议>IEEE International Conference on Plasma Science;International Conference on High-Power Particle Beams >Determination of electron-plasma temperature by measuring the propagation velocity of plasma-diffusion waves with the mixture gases of Ar-N
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Determination of electron-plasma temperature by measuring the propagation velocity of plasma-diffusion waves with the mixture gases of Ar-N

机译:通过使用Ar-N混合气体测量等离子体扩散波的传播速度来确定电子等离子体温度

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Summary form only given. From the measuring data of plasma jet propagation with ICCD camera, the determination method of the electron temperature is introduced. The bullet propagation has been analyzed by the plasma diffusion waves propagating with the group velocity of wave-packet as u ~ c/u where c is the velocity of acoustic wave and u is the velocity of plasma diffusion. The plasma-jet device is made by the syringe-needle electrode combined with the glass tube as it was introduced in [Cho G.S. et al, (2013)]. A high-voltage AC-power is supplied to the electrode of syringe needle through the ballast capacitor with the inverter of DC to AC of 40 kHz of 3.0 kV. The mixture gases of Ar and N are investigated with the flow late about 400 sccm. Ar-N Plasma Jet is one of the important issues in the applications of bio-medicine. The gases with the mixture ratio are used as: Ar(100%), Ar(98%) + Ne(2%) and Ar(95%) + Ne(5%), respectively. According to the mixture-ratio with ICCD, the group velocity of plasma propagation is observed as: 267 km/s, 305 km/s, and 313 km/s, respectively. The velocity of ion-acoustic wave is calculated to be 1.16 km/s, 1.24 km/s, and 1.25 km/s, respectively. The electron temperature is obtained as: 0.55 eV, 0.63 eV, and 0.65 eV, respectively.
机译:仅提供摘要表格。从用ICCD相机进行的等离子流传播的测量数据中,介绍了电子温度的确定方法。子弹的传播已经通过等离子扩散波进行了分析,等离子扩散波以波包的群速度为u〜c / u传播,其中c是声波速度,u是等离子扩散速度。等离子体喷射装置是由注射器针状电极与玻璃管组合而成的,正如[C​​ho G.S. et al。,(2013)]所介绍的那样。高压镇流器通过镇流电容器将高压交流电提供给注射器针头的电极,而直流到交流的逆变器为3.0 kV的40 kHz。研究了Ar和N的混合气体,其后流动时间约为400 sccm。 Ar-N等离子喷射是生物医学应用中的重要问题之一。具有混合比的气体分别用作:Ar(100%),Ar(98%)+ Ne(2%)和Ar(95%)+ Ne(5%)。根据与ICCD的混合比,等离子体传播的群速分别为:267 km / s,305 km / s和313 km / s。计算出的离子声波速度分别为1.16 km / s,1.24 km / s和1.25 km / s。得到的电子温度分别为:0.55eV,0.63eV和0.65eV。

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