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Pushing Particles with Waves: Current Drive and α-Channeling

机译:用波推动粒子:电流驱动和α沟道

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It can be advantageous to push particles with waves in tokamaks or other magnetic confinement devices, relying on wave-particle resonances to accomplish specific goals. Waves that damp on electrons or ions in toroidal fusion devises can drive currents if the waves are launched with toroidal asymmetry. Theses currents are important for tokamaks, since they operate in the absence of an electric field with curl, enabling steady state operation. The lower hybrid wave and the electron cyclotron wave have been demonstrated to drive significant currents. Non-inductive current also stabilizes deleterious tearing modes. Waves can also be used to broker the energy transfer between energetic alpha particles and the background plasma. Alpha particles born through fusion reactions in a tokamak reactor tend to slow down on electrons, but that could take up to hundreds of milliseconds. Before that happens, the energy in these alpha particles can destabilize on collisionless timescales toroidal Alfven modes and other waves, in a way deleterious to energy confinement. However, it has been speculated that this energy might be instead be channeled instead into useful energy, that heats fuel ions or drives current. An important question is the extent to which these effects can be accomplished together.
机译:依靠波粒共振来实现特定目标,将具有波的粒子推入托卡马克或其他磁性限制装置中可能是有利的。如果以环形不对称性发射电磁波,则在环形聚变装置中会衰减电子或离子的波可以驱动电流。这些电流对于托卡马克来说很重要,因为它们在没有电场的情况下会产生卷曲,从而实现稳态运行。较低的杂波和电子回旋波已被证明可以驱动大电流。非感应电流还可以稳定有害的撕裂模式。波浪还可以用于促进高能α粒子与背景等离子体之间的能量转移。在托卡马克反应堆中通过聚变反应而生的α粒子趋向于放慢电子的速度,但这可能需要长达数百毫秒的时间。在此之前,这些α粒子中的能量可能会在无碰撞时标上破坏环形Alfven模式和其他波,从而对能量限制有害。然而,据推测,该能量可以替代地被引导成有用的能量,该有用的能量加热燃料离子或驱动电流。一个重要的问题是这些效果可以一起实现的程度。

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