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Electron cyclotron resonance heating in a short cylindrical plasma system

机译:短圆柱等离子体系统中的电子回旋共振加热

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Electron cyclotron resonance (ECR) plasma is produced and studied in a small cylindrical system. Microwave power is delivered by a CW magnetron at 2.45 GHz in TE10 mode and launched radially to have extraordinary (X) wave in plasma. The axial magnetic field required for ECR in the system is such that the first two ECR surfaces (B = 875.0 G andB = 437.5 G) reside in the system. ECR plasma is produced with hydrogen with typical plasma density ne as 3.2 × 1010 cm-3 and plasma temperature Te between 9 and 15 eV. Various cut-off and resonance positions are identified in the plasma system. ECR heating (ECRH) of the plasma is observed experimentally. This heating is because of the mode conversion of X-wave to electron Bernstein wave (EBW) at the upper hybrid resonance (UHR) layer. The power mode conversion efficiency is estimated to be 0.85 for this system. The experimental results are presented in this paper.
机译:在小型圆柱系统中产生并研究电子回旋共振(ECR)等离子体。微波功率由CW磁控管在TE 10 模式下以2.45 GHz的频率传递,并放射状发射,从而在等离子体中产生非凡(X)波。系统中ECR所需的轴向磁场应使前两个ECR表面(B = 875.0 G和B = 437.5 G)位于系统中。 ECR等离子体由氢气产生,氢气的典型等离子体密度为n e 为3.2×10 10 cm -3 ,等离子体温度T e < / sup>在9到15 eV之间。在等离子体系统中识别出各种截止和共振位置。实验观察到等离子体的ECR加热(ECRH)。这种加热是由于在上层混合共振(UHR)层将X波模式转换为电子伯恩斯坦波(EBW)。对于该系统,功率模式转换效率估计为0.85。实验结果在本文中给出。

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