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Electron Information in Single- and Dual-Frequency Capacitive Discharges at Atmospheric Pressure

机译:大气压下单频和双频电容放电中的电子信息

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摘要

Determining the electron properties of weakly ionized gases, particularly in a high electron-neutral collisional condition, is a nontrivial task; thus, the mechanisms underlying the electron characteristics and electron heating structure in radio-frequency (rf) collisional discharges remain unclear. Here, we report the electrical characteristics and electron information in single-frequency (4.52 MHz and 13.56 MHz) and dual-frequency (a combination of 4.52 MHz and 13.56 MHz) capacitive discharges within the abnormal α-mode regime at atmospheric pressure. A continuum radiation-based electron diagnostic method is employed to estimate the electron density (ne) and temperature (Te). Our experimental observations reveal that time-averaged ne (7.7–14 × 1011 cm−3) and Te (1.75–2.5 eV) can be independently controlled in dual-frequency discharge, whereas such control is nontrivial in single-frequency discharge, which shows a linear increase in ne and little to no change in Te with increases in the rf input power. Furthermore, the two-dimensional spatiotemporal evolution of neutral bremsstrahlung and associated electron heating structures is demonstrated. These results reveal that a symmetric structure in electron heating becomes asymmetric (via a local suppression of electron temperature) as two-frequency power is simultaneously introduced.
机译:确定弱电离气体的电子性质,特别是在高电子中性碰撞条件下,是一项艰巨的任务。因此,射频(rf)碰撞放电中电子特性和电子加热结构的基础机理仍然不清楚。在这里,我们报告了在大气压力下的异常α模式下,单频(4.52 MHz和13.56 MHz)和双频(4.52 MHz和13.56 MHz的组合)电容放电的电学特性和电子信息。采用基于连续辐射的电子诊断方法来估计电子密度(ne)和温度(Te)。我们的实验观察表明,时间平均ne(7.7–14×10 11 cm −3 )和Te(1.75-2.5 eV)可以在双频中独立控制放电,而这种控制在单频放电中是不平凡的,随着rf输入功率的增加,ne线性增加,而Te几乎没有变化。此外,还证明了中性致辐射和相关的电子加热结构的二维时空演化。这些结果表明,当同时引入两频功率时,电子加热中的对称结构变得不对称(通过电子温度的局部抑制)。

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