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Formation mechanism of dot-line square superlattice pattern in dielectric barrier discharge

机译:介质阻挡放电中点阵正方形超晶格图案的形成机理

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We investigate the formation mechanism of the dot-line square superlattice pattern (DLSSP) in dielectric barrier discharge. The spatio-temporal structure studied by using the intensified-charge coupled device camera shows that the DLSSP is an interleaving of three different subpatterns in one half voltage cycle. The dot square lattice discharges first and, then, the two kinds of line square lattices, which form square grid structures discharge twice. When the gas pressure is varied, DLSSP can transform from square superlattice pattern (SSP). The spectral line profile method is used to compare the electron densities, which represent the amounts of surface charges qualitatively. It is found that the amount of surface charges accumulated by the first discharge of DLSSP is less than that of SSP, leading to a bigger discharge area of the following discharge (lines of DLSSP instead of halos of SSP). The spatial distribution of the electric field of the surface charges is simulated to explain the formation of DLSSP. This paper may provide a deeper understanding for the formation mechanism of complex superlattice patterns in DBD. (C) 2014 AIP Publishing LLC.
机译:我们研究介电势垒放电中的点划线正方形超晶格图案(DLSSP)的形成机理。通过使用增强电荷耦合器件照相机研究的时空结构表明,DLSSP是在一个半电压周期内对三个不同子模式的交错。点正方形格子首先放电,然后,形成正方形格子结构的两种线形正方形格子放电两次。当气压变化时,DLSSP可以从方形超晶格图案(SSP)转变。光谱线轮廓法用于比较电子密度,该电子密度定性地表示表面电荷的量。可以发现,DLSSP第一次放电所累积的表面电荷量小于SSP,从而导致后续放电的更大放电面积(DLSSP的线而不是SSP的光晕)。模拟了表面电荷电场的空间分布,以解释DLSSP的形成。本文可以为DBD中复杂的超晶格图案的形成机理提供更深入的了解。 (C)2014 AIP Publishing LLC。

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