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Slow- and helicon-wave sustained discharges in HF/VHF bands of radio frequency

机译:射频HF / VHF频带中的慢波和螺旋波持续放电

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Helicon-wave sustained (HW) and slow-wave sustained (SW) discharges are studied in a whistler- or helicon-wave range of frequency using high-frequency (13.56 MHz) and very-high-frequency (50 and 144 MHz) bands of rf. For 13.56 and 50 MHz, in addition to capacitive-coupling (E) discharge and the HW discharge, the SW discharge is observed at an extremely low rf power and plasma density; lower than the E discharge region. For 144 MHz, no E discharges appear and the transition from the SW discharge to the HW discharge occurs. In the SW discharge, both the electromagnetic and electrostatic waves are observed. The results of two-dimensional wave code and analytic calculation indicate that the electrostatic component of the electric field parallel to a static magnetic field is dominant in plasma production in the SW discharge. (C) 2004 American Institute of Physics. [References: 35]
机译:使用高频(13.56 MHz)和超高频(50和144 MHz)频带在惠斯勒或螺旋波频率范围内研究了螺波持续(HW)和慢波持续(SW)放电射频对于13.56和50 MHz,除了电容耦合(E)放电和HW放电外,在非常低的rf功率和等离子体密度下还可以观察到SW放电。低于E放电区域。对于144 MHz,没有E放电出现,并且发生了从SW放电到HW放电的过渡。在SW放电中,可以观察到电磁波和静电波。二维波码和解析计算的结果表明,与静态磁场平行的电场的静电分量在SW放电的等离子体产生中占主导地位。 (C)2004年美国物理研究所。 [参考:35]

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