首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Two modes of interfacial pattern formation by atmospheric pressure helium plasma jet-ITO interactions under positive and negative polarity
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Two modes of interfacial pattern formation by atmospheric pressure helium plasma jet-ITO interactions under positive and negative polarity

机译:大气压氦等离子体射流射线ITO相互作用两种界面图案形成的两种模式

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In this paper, we report the observation of an interfacial pattern formation on the ITO surface by atmospheric pressure helium plasma jet-ITO interactions. By changing the voltage polarity of positive and negative pulses, the interfacial phenomenon displays two different pattern modes, i.e. a double ring pattern with a combination of homogeneous and filamentous modes as well as a single ring pattern with a homogeneous mode. The reasons may mainly be attributed to the spread of a radially outward traveling surface ionization wave that would cause electric field distributions and charge accumulations on the ITO surface. The spatial-temporal distribution of N-2(+)(B-2 Sigma(+)(u)) , He(3s(3)S), and O(3p(5)P) emissions are diagnosed to better understand the formation mechanism and the differences of plasma jet patterns under positive and negative polarities. Results show that the distribution of N-2(+)(B-2 Sigma(+)(u)) emission is the main contributor for generating the filament structure in a double ring pattern for positive polarity, the homogeneous mode pattern mainly depends on the distribution of O(3p(5)P) emission for positive and negative polarity. Additionally, in order to further systematically understand the behaviors of plasma jet patterns, some parametric results, such as behaviors versus pulse peak voltage, dielectric material, pulse repetition rate, and flow rate are investigated. Some interesting phenomena and additional insights for the plasma jet pattern are found with different parametric conditions. This study might help to better understand effects of plasma jets in interaction with surfaces, or its application in the medical sector.
机译:在本文中,我们通过大气压氦等离子体射流相互作用报道了观察ITO表面上的界面图案形成。通过改变正和负脉冲的电压极性,界面现象显示两种不同的图案模式,即具有均匀和丝状模式的组合的双环图案以及具有均匀模式的单环图案。原因可能主要归因于径向向外行驶表面电离波的扩散,其将导致电域分布和ITO表面上的电荷累加。 N-2(+)(B-2 Sigma(+)(+)(+)(u))的空间分布,尤(3s(3))和o(3p(5)p)排放被诊断为更好地理解形成机制和正极极性下等离子体喷射模式的差异。结果表明,N-2(+)(B-2 Sigma(+)(u))发射的分布是用于在双环图案中产生灯丝结构的主要因素,均匀模式模式主要取决于o(3p(5)p)发射积极极性的分布。另外,为了进一步系统地理解等离子体射流模式的行为,研究了一些参数结果,例如行为与脉冲峰值电压,介电材料,脉冲重复率和流速。一些有趣的现象和对等离子体喷射模式的额外见解是发现不同的参数条件。该研究可能有助于更好地了解等离子体喷射在与表面相互作用的影响,或其在医学领域的应用。

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