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首页> 外文期刊>Journal of Applied Physics >One‐dimensional numerical simulation of ac discharges in a high‐pressure mixture of Ne+0.1% Ar confined to a narrow gap between insulated metal electrodes
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One‐dimensional numerical simulation of ac discharges in a high‐pressure mixture of Ne+0.1% Ar confined to a narrow gap between insulated metal electrodes

机译:Ne + 0.1%Ar的高压混合物中的交流放电的一维数值模拟,其限制在绝缘金属电极之间的狭窄间隙中

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The present work is concerned with a one‐dimensional dynamic simulation, incorporting a self‐consistent treatment of space‐charge effects, of the buildup and decay of ac discharges in a high‐ (≳100 Torr) pressure mixture of Ne+0.1% Ar confined to a narrow gap (∼10-2 cm) between insulator (MgO) covered metal electrodes. Numerical modeling has been done of the dynamics of successive avalanches triggered by the electric‐field‐dependent secondary emission of electrons at the cathode due to ionic species, metastables, and photons. The basic continuity equations of the problem deal with the following collisional phenomena in the gas volume: (i) electron impact excitation and ionization of neon atoms, (ii) collisional ionization involving excited neon states, (iii) two‐body and three‐body collisional processes involving energy transfer, and (iv) absorption and reemission of imprisoned resonant radiation. The computed results show a satisfactory agreement with measured parameters on a single cell of a specially constructed ’’one‐dimensional’’ ac plasma panel whose electrode linewidths were made an order of magnitude larger than the gas gap. Neon ions were found to play a dominant role in the secondary electron emission from the MgO surfaces, while photoemission was negligible. The theoretical and experimental results were fitted to yield a value of 0.45 for the intrinsic secondary‐emission coefficient of MgO surfaces caused by the arrival of neon ions under vacuum conditions. Finally, sample results are presented for the spatial and temporal profiles of the electric field, charged particle concentrations, and the volume density of various excited species of the host gas.
机译:目前的工作涉及一维动态模拟,该模拟涉及对空间电荷效应的自洽处理,在Ne + 0.1%Ar的高(≳100Torr)压力混合物中交流放电的建立和衰减的影响。限制在绝缘体(MgO)覆盖的金属电极之间的狭窄间隙(约10-2 cm)。对由于离子种类,亚稳态和光子在阴极上依赖于电场的电子二次发射而触发的连续雪崩的动力学进行了数值建模。该问题的基本连续性方程涉及气体体积中的以下碰撞现象:(i)电子碰撞激发和氖原子的电离;(ii)涉及激发氖态的碰撞电离;(iii)两体和三体碰撞过程涉及能量转移,以及(iv)吸收和释放囚禁的共振辐射。计算结果表明,在特殊构造的“一维”交流等离子面板的单个单元上,其电极线宽比气隙大一个数量级,在测量单元上的测量参数令人满意。发现氖离子在MgO表面的二次电子发射中起主要作用,而光发射则可以忽略不计。根据理论和实验结果拟合得出,在真空条件下,由于氖离子的到来,MgO表面的固有二次发射系数的值为0.45。最后,给出了样品的结果,包括电场的时空分布,带电粒子浓度以及基质气体的各种激发态的体积密度。

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    《Journal of Applied Physics》 |1978年第4期|P.2365-2375|共11页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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