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Applications of high-power millimeter waves in the DIII-D fusion program,

机译:大功率毫米波在DIII-D融合程序中的应用,

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Abstract: First operation of a new generation of MW level, 110 GHz generator on the DIII-D fusion experimental device has been achieved. THe desire for high power, cw millimeter (mm) wave sources to support fusion research and development is just now beginning to be realized. Plasma heating and current drive with directed mm waves rely on the strong absorption achieved when the wave frequency matches the natural 'cyclotron' frequency of electrons in a magnetic field, or its harmonics. Recent progress in fusion experiments highlights the need for control of the interior details of the hot plasma, and mm wave systems are ideally suited for this role. A brief status of fusion research is given, and the importance of mm waves in the future directions for fusion research is described. The vacuum transmission components necessary for transmitting, monitoring, and launching high power 110 GHz waves into a plasma have been developed at General Atomics and will be described. High power mm waves have a number of attractive technological features for fusion applications compared with other candidate plasma heating and current drive technologies. Millimeter waves can be transmitted with high power density over large distances with low losses by utilizing corrugated waveguides, so the generators can be sited remotely, facilitating maintenance and saving valuable space near the fusion device. !10
机译:摘要:已在DIII-D融合实验装置上实现了新一代MW级110 GHz发生器的首次运行。对高功率,连续毫米(mm)波源的支持聚变研究和开发的愿望才刚刚开始实现。定向毫米波的等离子体加热和电流驱动依赖于当波频率与磁场中电子的自然“回旋加速器”频率或其谐波相匹配时所获得的强大吸收能力。聚变实验的最新进展凸显了对控制热等离子体内部细节的需求,毫米波系统非常适合担任这一角色。给出了融合研究的简要情况,并描述了毫米波在融合研究的未来方向中的重要性。 General Atomics已开发出将高功率110 GHz波传输,监视和发射到等离子体中所需的真空传输组件,并将对此进行描述。与其他候选等离子加热和电流驱动技术相比,高功率毫米波在融合应用中具有许多吸引人的技术特征。利用波纹波导可以以高功率密度在远距离传输毫米波,且损耗低,因此,发生器可以远程放置,便于维护并节省聚变设备附近的宝贵空间。 !10

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