Mutzafi Maor, Kaminer Ido, Harari Gal, Segev Mordechai
Physics Department and Solid State Institute, Technion, Haifa, 32000, Israel.
Department of Physics, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.
Nat Commun. 2017 Sep 21;8(1):650. doi: 10.1038/s41467-017-00651-z.
The wave-like nature of electrons has been known for almost a century, but only in recent years has the ability to shape the wavefunction of EBeams (Electron-Beams) become experimentally accessible. Various EBeam wavefunctions have been demonstrated, such as vortex, self-accelerating, Bessel EBeams etc. However, none has attempted to manipulate multi-electron beams, because the repulsion between electrons rapidly alters the beam shape. Here, we show how interference effects of the quantum wavefunction describing multiple electrons can be used to exactly balance both the repulsion and diffraction-broadening. We propose non-diffracting wavepackets of multiple electrons, which can also carry orbital angular momentum. Such wavefunction shaping facilitates the use of multi-electron beams in electron microscopy with higher current without compromising on spatial resolution. Simulating the quantum evolution in three-dimensions and time, we show that imprinting such wavefunctions on electron pulses leads to shape-preserving multi-electrons ultrashort pulses. Our scheme applies to any beams of charged particles, such as protons and ion beams.Vortex electron beams are generated using single electrons but their low beam-density is a limitation in electron microscopy. Here the authors propose a scheme for the realization of non-diffracting electron beams by shaping wavepackets of multiple electrons and including electron-electron interactions.
电子的波动性已为人所知近一个世纪,但直到近年来,塑造电子束波函数的能力才在实验上成为可能。人们已经展示了各种电子束波函数,如涡旋、自加速、贝塞尔电子束等。然而,此前没有人尝试操纵多电子束,因为电子之间的排斥力会迅速改变束流形状。在这里,我们展示了如何利用描述多个电子的量子波函数的干涉效应来精确平衡排斥力和衍射展宽。我们提出了多个电子的非衍射波包,其也可以携带轨道角动量。这种波函数整形有助于在不影响空间分辨率的情况下,在电子显微镜中使用更高电流的多电子束。通过模拟三维空间和时间中的量子演化,我们表明在电子脉冲上施加这种波函数会产生形状保持的多电子超短脉冲。我们的方案适用于任何带电粒子束,如质子束和离子束。涡旋电子束是使用单个电子产生的,但其低束流密度是电子显微镜应用中的一个限制。本文作者提出了一种通过塑造多个电子的波包并考虑电子 - 电子相互作用来实现非衍射电子束的方案。