论文标题

微型微波驱动的等离子体喷射的理论研究

Theoretical investigation of a miniature microwave driven plasma jet

论文作者

Klute, Michael, Porteanu, Horia-Eugen, Stefanovic, Ilija, Heinrich, Wolfgang, Awakowicz, Peter, Brinkmann, Ralf Peter

论文摘要

微波炉和射频驱动的等离子体飞机在许多技术应用中起着重要作用。它们通常以称为电子模式的电容模式进行操作。作为一种新的等离子体来源,已经提出了MMWICP(微型微波ICP),这是一种基于特殊设计的谐振器,具有电感耦合的小型等离子体射流,该谐振器充当LC谐振电路。这项工作基于谐振器中电磁场的串联表示以及等离子体内损耗过程的体积(全局)模型,为新设备的理论模型提供了一个理论模型。可以通过方位角波数m找到无限数量的模式。这些模式基本上决定了系统的电磁行为,并且与普通腔模式不同。模式M = 0可以通过电感模式识别,称为H模式,模式M = 1是电容模式,称为E模式。两种模式都涉及不同的操作机制,这些操作机制由等离子体参数的不同值隔开。在第二步中,匹配网络及其特征被考虑在内,以找到稳定的平衡点和可能的磁滞效应。作为主要结果,显示了对MMWICP谐振器的电感功率耦合的可行性。

Microwave and radio frequency driven plasmas jets play an important role in many technical applications. They are usually operated in a capacitive mode known as E-mode. As a new plasma source the MMWICP (Miniature Micro Wave ICP) has been proposed, a small scale plasma jet with inductive coupling based on a specially designed resonator that acts as an LC-resonance circuit. This work presents a theoretical model of the new device, based on a series representation of the electromagnetic field in the resonator and the volume integrated (global) model for the loss processes within the plasma. An infinite number of modes can be found ordered by the azimuthal wave number m. These modes essentially determine the electromagnetic behavior of the system and differ from ordinary cavity modes. The mode m=0 can be identified with the inductive mode and is called H-mode, the mode m=1 is the capacitive mode and is called E-mode. Both modes refer to different operating regimes, which are separated by different values of the plasma parameters. In a second step the matching network and its characteristics are taken into account in order to find stable equilibrium points and possible hysteresis effects. As main result, the feasibility of inductive power coupling for the MMWICP resonator is shown.

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