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Characteristics of electron cyclotron waves creating field-aligned and transverse plasma-potential structures

机译:电子回旋波的特性产生场对准和横向等离子体电势结构

摘要

Characteristics of electromagnetic waves of azimuthal mode number m = ±1 are investigated experimentally, analytically and numerically when the waves triggering the field-aligned and transverse plasma-potential structure modification near an electron cyclotron resonance (ECR) point are injected into an inhomogeneously magnetized plasma with high-speed ion flow. The waves of m = +1 and −1 modes generate an electric double layer near the ECR point at the radially central and peripheral areas of the plasma column, respectively, and the transverse electric fields are consequently formed. At these areas the waves have a right-handed polarization and are absorbed through the ECR mechanism, where the experimental and analytical results do show the polarization reversal along the radial axis. The numerical results by plasma analysis by finite element method (FEM)/wave analysis by FEM (PAF/WF) code show that the wave-absorption area is localized at the radially central and peripheral areas for m = +1 and −1 mode waves, respectively, being consistent with the experimental and analytical ones.
机译:当将在电子回旋共振(ECR)点附近触发场对准和横向等离子体势能结构修改的电磁波注入到非均匀磁化等离子体中时,将通过实验,分析和数值研究方位模式数m =±1的电磁波的特性高速离子流。 m = +1和-1模式的波分别在等离子柱的径向中心和外围区域的ECR点附近生成电双层,因此形成了横向电场。在这些区域,波具有右旋极化,并通过ECR机制吸收,其中实验和分析结果的确显示了沿径向轴的极化反转。通过有限元方法(FEM)进行等离子体分析/通过FEM(PAF / WF)代码进行波分析的数值结果表明,对于m = +1和-1模式波,吸波区域位于径向中心和外围区域分别与实验和分析一致。

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