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Vacuum breakdown from nanostructured fuzzy surfaces

机译:纳米结构模糊表面的真空分解

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摘要

Studying of initial steps of unipolar arc ignition process is important for reduction of probability of arcing between the plasma and the wall in thermonuclear devices. Tungsten nano-fuzz surface formed by helium plasma irradiation at high fluences and temperatures is a perfect material for easy arc ignition. Snowflake-like craters were detected on the fuzzy surfaces after short micro-breakdowns. Such sort of craters have not been observed before on any other metallic surfaces. These specific traces are formed due to unique properties of the fuzz structure. The nano-fuzz could be easily melted and vaporized by micro-breakdown current, due to it porosity and bad thermal conductivity, and formation of low conducting metallic vapor cause discharge movement to the nearest place. Thus, even low current arc can be generated and leave traces, which could be easily observed by a optic or secondary electron microscopes.
机译:研究单极电弧点火过程的初始步骤对于降低热核装置中等离子体与壁之间的电弧放电可能性非常重要。在高注量和高温度下通过氦等离子体辐照形成的钨纳米绒毛表面是易于引弧的理想材料。短暂的微破裂后,在模糊的表面上检测到了类似雪花的火山口。以前从未在任何其他金属表面上观察到此类陨石坑。这些特定的迹线是由于模糊结构的独特属性而形成的。纳米绒毛由于其多孔性和差的导热性而容易被微击穿电流熔化和汽化,并且低导电金属蒸气的形成导致放电运动到最近的位置。因此,甚至可以产生低电流电弧并留下痕迹,这可以通过光学或二次电子显微镜容易地观察到。

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