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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Penetration of Ar and He RF-driven plasma jets into micrometer-sized capillary tubes
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Penetration of Ar and He RF-driven plasma jets into micrometer-sized capillary tubes

机译:将AR和HE RF驱动的等离子体喷射器渗透到千分尺寸毛细管管中

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The penetration and propagation of cold atmospheric pressure plasmas into volumes having sub-millimeter to micrometer sizes with large aspect ratios is required for enabling an effective disinfection of the inside of catheter tubes, tooth cavities, skin pores and enhance plasma catalysis in porous catalysts. We report on a study using a low voltage RF driven argon and helium plasma jets with the plasma generation outside a capillary tube with a large aspect ratio followed by its penetration and propagation inside the capillary. We present the experimental determination of the limitations on the penetration diameter, and the underpinning mechanisms of the plasma propagation and penetration process. Experimental results include time resolved imaging of plasma propagation and penetration in capillaries with different internal diameter and surface electric field measurements.
机译:冷气压等离子体的穿透和传播具有具有大纵横比具有大纵横比的亚毫米尺寸的体积,使得能够有效消毒在导管管,牙齿腔,皮肤孔的内部,并增强多孔催化剂中的血浆催化。 我们在使用低压RF驱动的氩气和氦等离子体射流的研究中报告了具有大纵横比的毛细管外的等离子体产生,然后在毛细管内部穿透和传播。 我们介绍了对渗透直径的限制的实验确定,以及血浆繁殖和渗透过程的支撑机制。 实验结果包括具有不同内径和表面电场测量的毛细血管中等离子体繁殖和渗透的时间分辨成像。

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