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An Inductively Coupled Plasma Source for the Gaseous Electronics Conference RF Reference Cell

机译:气态电子会议射频参考电池的电感耦合等离子体源

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摘要

In order to extend the operating range of the GEC RF Reference Cell, we developed an inductively coupled plasma source that replaced the standard parallel-plate upper-electrode assembly. Voltage and current probes, Langmuir probes, and an 80 GHz interferometer provided information on plasmas formed in argon, chlorine, and nitrogen at pressures from 0.1 Pa to 3 Pa. For powers deposited in the plasma from 20 W to 300 W, the source produced peak electron densities between 1010/cm3 and 1012/cm3 and electron temperatures near 4 eV. The electron density peaked on axis with typical full-width at half maximum of 7 cm to 9 cm. Discharges in chlorine and nitrogen had bimodal operation that was clearly evident from optical emission intensity. A dim mode occurred at low power and a bright mode at high power. The transition between modes had hysteresis. After many hours of high-power operation, films formed on electrodes and walls of one Cell. These deposits affected the dim-to-bright mode transition, and also apparently caused generation of hot electrons and increased the plasma potential.
机译:为了扩展GEC RF参考电池的工作范围,我们开发了一种电感耦合等离子体源,代替了标准的平行板上电极组件。电压和电流探头,Langmuir探头以及80 GHz干涉仪提供了有关在压力为0.1 Pa至3 Pa的氩气,氯气和氮气中形成的等离子体的信息。对于20 W至300 W的等离子体中沉积的功率,在10 10 / cm 3 和10 12 / cm 3 之间的最大电子密度和电子温度接近4 eV。电子密度在轴上达到峰值,具有典型的全宽度,最大值为7 cm至9 cm。氯和氮的放电具有双峰运行,这从光发射强度可以明显看出。低功率发生暗淡模式,高功率发生亮模式。模式之间的过渡具有迟滞。经过数小时的高功率操作后,一个电池的电极和壁上形成了薄膜。这些沉积物影响了从暗到亮模式的转变,并且显然还引起了热电子的产生并增加了等离子体电势。

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