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U3DS, a Compact Mass-Analyzer for Large High Current-Density Ribbon Ion Beams

机译:U3DS,用于大型高电流密度带状离子束的紧凑型质量分析仪

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A very compact analyzer, named U3DS, with a resolving power of around 30 is described, for delivering mass-analyzed ribbon ion beams from the ion source through a resolving slit to a substrate. The distance from ion source to substrate may be less than the breadth of the beam and of the substrate, for example about 1 meter, for a ribbon beam with a breadth of 2.2m or more. The simple apparatus comprises a long yoke spanning the ion beam breadth, i.e. the large dimension, with a U-shaped cross section. There is no component of magnetic field along the beam breadth dimension, which as a result may be extremely large without increasing the number of ampere turns required. The trajectories of the ions in this field have the form of 3-dimensional S-shapes. The benefits can be summarized: Increasing the breadth of the beam requires the same number of ampere-turns, but the apparatus gets larger only in linear proportion to the beam breadth. Net deflection is linearly proportional to 1/mass. Focal length is short, so the equipment is compact. High fields up to ~ 1 Tesla can be used in spite of the large beam dimensions, and this carries subtle benefits for high beam current densities - the current which can be stably transmitted is far higher. In contrast, the power and the weight of a conventional magnet increase with the square of the beam breadth, or even worse, while the deflection is only proportional to the square root of 1/mass. All scaling effects of the new analyzer are highly favorable for very large beams.
机译:描述了一种非常紧凑的分析仪,称为U3DS,具有大约30的分辨能力,用于将来自离子源的质量分析带状离子束通过分辨缝隙传输到基板。对于宽度为2.2m或更大的带状束,从离子源到衬底的距离可以小于束和衬底的宽度,例如约1米。该简单的装置包括跨越离子束宽度即大尺寸的长轭,其具有U形横截面。沿束宽度方向没有磁场分量,因此在不增加所需安培匝数的情况下,磁场分量可能非常大。该场中的离子的轨迹具有3维S形的形式。好处可以概括为:增加光束的宽度需要相同的安培匝数,但是设备仅与光束的宽度成线性比例而变大。净变形与1 /质量成线性比例。焦距短,因此设备紧凑。尽管光束尺寸较大,但仍可使用高达〜1 Tesla的高磁场,这对于高光束电流密度具有微妙的好处-可以稳定传输的电流要高得多。相反,常规磁体的功率和重量随束宽的平方而增加,甚至更差,而挠度仅与1 /质量的平方根成正比。新型分析仪的所有缩放效果都非常适合超大光束。

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