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Discharge mode transitions in low-frequency inductively coupled plasmas with internal oscillating current sheets

机译:具有内部振荡电流表的低频感应耦合等离子体中的放电模式转变

摘要

Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma sustained by an internal oscillating radio frequency (rf) current sheet are studied. The unidirectional rf current sheet is generated by an internal antenna comprising two orthogonal sets of synphased rf currents driven in alternately reconnected copper litz wires. It is shown that in the low-to-intermediate pressure range the plasma source can be operated in the electrostatic (E) and electromagnetic (H) discharge modes. The brightness of the E -mode argon plasma glow is found remarkably higher than in inductively coupled plasmas with external flat spiral "pancake" coils. The cyclic variations of the input rf power result in pronounced hysteretic variations of the optical emission intensity and main circuit parameters of the plasma source. Under certain conditions, it appears possible to achieve a spontaneous E→H transition ("self-transition"). The observed phenomenon can be attributed to the thermal drift of the plasma parameters due to the overheating of the working gas. The discharge destabilizing factors due to the gas heating and step-wise ionization are also discussed. © 2005 American Vacuum Society.
机译:研究了由内部振荡射频(rf)电流表维持的低频(〜460 kHz)感应耦合等离子体中两种放电模式之间的转换。单向射频电流是由内部天线生成的,该天线包括两组正交的同相射频电流,这些射频电流在交替重新连接的铜绞合线中驱动。结果表明,在低至中压范围内,等离子源可以在静电(E)和电磁(H)放电模式下运行。发现E模式氩等离子体辉光的亮度明显高于带有外部扁平螺旋“薄饼”线圈的电感耦合等离子体。输入射频功率的周期性变化会导致等离子源的光发射强度和主电路参数出现明显的滞后变化。在某些条件下,似乎有可能实现自发的E→H跃迁(“自跃迁”)。观察到的现象可归因于由于工作气体的过热引起的等离子体参数的热漂移。还讨论了由于气体加热和逐步电离引起的放电不稳定因素。 ©2005美国真空协会。

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