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Performance of plastic electron optics components fabricated using a 3D printer

机译:使用3D打印机制造的塑料电子光学元件的性能

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We show images produced by an electron beam deflector, a quadrupole lens and a einzel lens fabricated from conducting and non-conducting plastic using a 3D printer. Despite the difficulties associated with the use of plastics in vacuum, such as outgassing, poor conductivity, and print defects, the devices were used successfully in vacuum to steer, stretch and focus electron beams to millimeter diameters. Simulations indicate that much smaller focus spot sizes might be possible for such 3D-printed plastic electron lenses taking into account some possible surface defects. This work was motivated by our need to place electron optical components in difficult-to-access geometries. Our proof-of-principle demonstration opens the door to consider 3D-printed electron microscopes, whose reduced cost would make such microscopes more widely available. Potentially, this may have a significant impact on electron beam science and technology in general and electron microscopy in particular.
机译:我们示出了使用3D打印机制造的电子束偏转器,四极镜头和由导电和非导电塑料制成的Einzel镜片产生的图像。 尽管在真空中使用塑料有关的困难,例如除了除气,导电性差和印刷缺陷,但是将器件成功地真空用于转向,拉伸和聚焦电子束到毫米直径。 模拟表明,这种3D印刷的塑料电子镜片考虑了一些可能的表面缺陷,可能可能是更小的聚焦点尺寸。 这项工作是由于我们需要将电子光学元件放置在难以访问的几何形状中的动机。 我们的原则上的证据演示打开了考虑3D印刷电子显微镜的门,其成本降低将使这种显微镜更广泛地可用。 潜在的情况下,这可能对电子束科学和技术产生重大影响,特别是电子显微镜。

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