论文标题

传输电子显微镜的计算幽灵成像

Computational ghost imaging for transmission electron microscopy

论文作者

Kallepalli, Akhil, Viani, Lorenzo, Stellinga, Daan, Rotunno, Enzo, Sun, Ming-Jie, Bowman, Richard, Rosi, Paolo, Frabboni, Stefano, Balboni, Roberto, Migliori, Andrea, Grillo, Vincenzo, Padgett, Miles

论文摘要

虽然传输电子显微镜(TEM)可以达到比光学显微镜更高的分辨率,但在涉及的高能量过程中,它们面临对样品损害的挑战。在这里,我们使用电子显微镜中的计算幽灵成像技术探索以降低所需的总强度。电子缺乏电子电子的高分辨率光空间调制器意味着需要采用另一种方法。为此,我们根据使用电荷金属针的分布来构造光束的分布以及一种新型的重建方法,以处理产生的高度非正交模式,以显示梁的塑形技术。其次,我们说明了这种幽灵成像方法在电子显微镜中的应用。为了测试该技术功能的全部范围,我们意识到了一种类似的光学设置方法。在这两个制度中,与栅格扫描相比,减少总照明强度量的能力是显而易见的。

While transmission electron microscopes (TEM) can achieve a much higher resolution than optical microscopes, they face challenges of damage to samples during the high energy processes involved. Here, we explore using computational ghost imaging techniques in electron microscopy to reduce the total required intensity. The technological lack of the equivalent high-resolution, optical spatial light modulator for electrons means that a different approach needs to be pursued. To this end, we show a beam shaping technique based on the use of a distribution of electrically charged metal needles to structure the beam, alongside a novel reconstruction method to handle the resulting highly non-orthogonal patterns. Second, we illustrate the application of this ghost imaging approach in electron microscopy. To test the full extent of the capabilities of this technique, we realised an analogous optical setup method. In both regimes, the ability to reduce the amount of total illumination intensity is evident in comparison to raster scanning.

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