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Updated physics design ITER-SINGAP accelerator

机译:更新了物理设计ITER-SINGAP加速器

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In contrast to the Multi Aperture-MUlti Grid (MAMuG) concept of the ITER neutral beam injector reference design in which D~- acceleration to 40 A, 1 MeV is achieved through seven grids containing 1280 apertures each, the European SINgle GAP-SINGle Aperture (SINGAP) concept proposes acceleration of 1280 pre-accelerated (20-50 keV) beamlets to 1 MeV in a single step. During acceleration the beamlets are merged into 16 beam groups of 80 beamlets. These 16 beam groups ("hyperbeamlets") then emerge from an exit grid containing only 16 very large apertures. This concept is expected to reduce cost and increase the tolerance to mechanical errors and stray magnetic fields. The physics of this concept and a design have been described before by ourselves. Improved computational facilities have enabled us to calculate larger models and this has led to necessary modifications to the design which are described in this paper.
机译:与ITER中性射束注入器参考设计的多孔径MUlti网格(MAMuG)概念形成鲜明对比的是,通过七个分别具有1280个孔径的网格,D〜-加速至40 A,1 MeV达到了1 MeV,欧洲的SINgle GAP-SINGle Aperture (SINGAP)概念提出了将1280个预加速(20-50 keV)子束加速至1 MeV的步骤。在加速期间,子束合并为80个子束的16个束组。然后,这16个光束组(“超光束”)从仅包含16个非常大的孔径的出射栅格出射。预期该概念将降低成本并增加对机械误差和杂散磁场的容忍度。我们自己已经描述了此概念的物理原理和设计。改进的计算工具使我们能够计算更大的模型,这导致对设计进行必要的修改,本文对此进行了介绍。

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