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Generation and heating of toroidally confined overdense plasmas with 2.45 GHz microwaves

机译:用2.45 GHz微波产生和加热环形受限的过稠等离子体

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In the stellarator TJ-K, overdense low-temperature plasmas are created by means of microwaves at 2.45 GHz. Extensive studies have been carried out to understand the heating process. The plasma breakdown at the cyclotron resonance layer has been directly observed with a multiple Langmuir probe array. Profile measurements indicate power deposition at the plasma boundary, where the upper hybrid resonance (UHR) is located. This result is confirmed by full-wave simulations which emphasize the importance of the vacuum vessel to increase the absorbed microwave power due to multiple reflections. Further indications for heating at the UHR layer are found by measurements of the wave electric field of the incident microwave and by power-modulation experiments. In contrast to similar experiments, no indication for heating by electron Bernstein waves was found.
机译:在恒星器TJ-K中,通过2.45 GHz的微波产生了过密的低温等离子体。为了理解加热过程已经进行了广泛的研究。用多个朗缪尔探针阵列已经直接观察到回旋共振层的等离子体击穿。轮廓测量表明功率沉积在等离子体混合边界处,即上混合共振(UHR)所在的位置。全波仿真证实了这一结果,该仿真强调了真空容器由于多次反射而增加吸收的微波功率的重要性。通过测量入射微波的波电场并通过功率调制实验,可以找到在UHR层加热的进一步指示。与类似的实验相反,没有发现电子伯恩斯坦波加热的迹象。

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