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中国物理学会期刊

射频激励等离子体非线性效应的FDTD数值模拟

CSTR: 32037.14.aps.56.5304

Numerical simulation of plasma nonlinear phenomena excited by radio-frequency wave using FDTD method

CSTR: 32037.14.aps.56.5304
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  • 在考虑热运动、电子复合、扩散等效应后,建立电磁波与等离子体相互作用模型,验证了射频激励等离子体时产生的二次、多次谐波以及各个不同频段信号的调制现象,得到了不同激励功率、产生电子的电场阈值、电子能量等参数对电磁波频谱的影响,这对于射频激励等离子体的电路匹配、耦合器件以及等离子体天线传输、电磁兼容等设计很有帮助.

     

    Radio-frequency excitation enables the plasma to contain two, three or more harmonic waves, and the modulating signal produced by signal source and excitation source under the plasma nonlinear influence should not be ignored. A new wave-plasma interaction model is set up considering the electron thermal motion, recombination and diffusion effect. It verifies the modulations of signal in different frequencies and explains the production of the second and high order harmonic waves in plasma excitation. The variation of the EM wave pedigree is analyzed taking into account the parameters such as input power, ionization field threshold and electron average energy. The result is of use in tuning the matching circuit or selecting the coupling element in plasma discharge, and it is helpful in electric magnetic interface design, plasma antenna transmission, etc.

     

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