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Symmetric Neutralized Ion Beams for Magnetic Fusion Applications

机译:用于磁聚变应用的对称中和离子束

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A symmetric neutralized ion beam (SNIB) is composed of positive and negative ions, and is capable of propagating across a transverse magnetic field due to the polarization of the beam. Such a beam may be of use as an alternative or complement to conventional neutral beam injection (NBI) in magnetic confinement fusion devices. SNIBs of energies from hundreds of keV up to a few MeV can be efficiently produced through a novel application of radio frequency quadrupole (RFQ) accelerators. Because the cross-field propagation ability of the SNIB depends mainly on beam density, SNIBs of significantly lower energy than the 1 MeV envisioned for ITER neutral beams can in principle reach the center of a magnetically confined plasma. Some challenges that need to be overcome for this technique to be viable are identified; nevertheless, the approach is attractive when compared to the bulky, high voltage, conventional neutral beam systems. Distributed injection of many beams is possible due to the relative compactness of a SNIB module.
机译:对称中和离子束(SNIB)由正离子和负离子组成,由于离子束的极化而能够在横向磁场中传播。这样的束可以用作磁约束聚变装置中的常规中性束注入(NBI)的替代或补充。可以通过新颖应用射频四极(RFQ)加速器有效地产生从数百keV到几MeV的能量SNIB。因为SNIB的跨场传播能力主要取决于束密度,所以比ITER中性束设想的1 MeV能量低得多的SNIB原则上可以到达磁约束等离子体的中心。确定了使该技术可行需要克服的一些挑战。但是,与笨重的高压常规中性线束系统相比,该方法很有吸引力。由于SNIB模块的相对紧凑性,许多光束的分布式注入是可能的。

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