Advanced Science Institute, RIKEN (The Institute of Physical and Chemical Research), Wako, Saitama 351-0198, Japan.
Nature. 2010 Apr 1;464(7289):737-9. doi: 10.1038/nature08904.
All forms of waves can contain phase singularities. In the case of optical waves, a light beam with a phase singularity carries orbital angular momentum, and such beams have found a range of applications in optical manipulation, quantum information and astronomy. Here we report the generation of an electron beam with a phase singularity propagating in free space, which we achieve by passing a plane electron wave through a spiral phase plate constructed naturally from a stack of graphite thin films. The interference pattern between the final beam and a plane electron wave in a transmission electron microscope shows the 'Y'-like defect pattern characteristic of a beam carrying a phase singularity with a topological charge equal to one. This fundamentally new electron degree of freedom could find application in a number of research areas, as is the case for polarized electron beams.
所有形式的波都可以包含相位奇点。在光学波的情况下,具有相位奇点的光束携带轨道角动量,并且这种光束已经在光学操纵、量子信息和天文学中找到了一系列应用。在这里,我们报告了一种在自由空间中传播的具有相位奇点的电子束的产生,我们通过将平面电子波穿过由堆叠的石墨薄膜自然构造的螺旋相位板来实现这一点。在透射电子显微镜中,最终光束与平面电子波之间的干涉图案显示出“Y”形缺陷图案,这是携带拓扑电荷等于一的相位奇点的光束的特征。这种全新的电子自由度可能会在许多研究领域得到应用,就像极化电子束一样。