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Travelling Modes in Wave-Heated Plasma Sources

机译:波加热等离子体源的传播模式

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This paper describes a theoretical and experimental study of surface- and helicon-wave-heated plasma sources in which standing waves are set up in the cavity between the closed end plate to a plasma vessel and a wave launcher while travelling waves propagate from the opposite side of the launcher into a region which is long compared with the attenuation distance of the waves. We model the situation as a lossy transmission line of finite length coupled at the launcher to a lossy transmission line of infinite extent. RF power applied to the launcher divides in the ratio of the input impedances of the two transmission lines. For a conducting end plate, the power delivered to the travelling waves is a maximum when the cavity length is an odd number of 1/4 wavelengths long for which its input impedance is a maximum. Similarly, for an insulated end plate, the power delivered to the travelling waves is a maximum for a cavity with a length equal to an integer number of half wavelengths for which its input impedance is again a maximum.
机译:本文描述了表面和螺旋波加热的等离子体源的理论和实验研究,其中在封闭端板到等离子体容器和波发射器之间的空腔中建立驻波,而行波从相反侧传播发射器进入一个与波的衰减距离相比更长的区域。我们将这种情况建模为有限长度的有损传输线,在发射器处耦合到无限长的有损传输线。施加到发射器的RF功率除以两条传输线的输入阻抗之比。对于导电端板,当腔体长度是其输入阻抗最大的1/4波长的奇数个数时,传递到行波的功率最大。类似地,对于绝缘端板,对于长度等于整数个半波长的腔体,传递给行波的功率最大,对于该半腔体,其输入阻抗再次最大。

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