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Theory and applications of free-electron vortex states

机译:自由电子涡流的理论与应用

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Both classical and quantum waves can form vortices: entities with helical phase fronts and circulating current densities. These features determine the intrinsic orbital angular momentum carried by localized vortex states. In the past 25 years, optical vortex beams have become an inherent part of modern optics, with many remarkable achievements and applications. In the past decade, it has been realized and demonstrated that such vortex beams or wavepackets can also appear in free electron waves, in particular, in electron microscopy. Interest in free-electron vortex states quickly spread over different areas of physics: from basic aspects of quantum mechanics, via applications for fine probing of matter (including individual atoms), to high-energy particle collision and radiation processes. Here we provide a comprehensive review of theoretical and experimental studies in this emerging field of research. We describe the main properties of electron vortex states, experimental achievements and possible applications within transmission electron microscopy, as well as the possible role of vortex electrons in relativistic and high-energy processes. We aim to provide a balanced description including a pedagogical introduction, solid theoretical basis, and a wide range of practical details. Special attention is paid to translating theoretical insights into suggestions for future experiments, in electron microscopy and beyond, in any situation where free electrons occur. (C) 2017 Elsevier B.V. All rights reserved.
机译:经典和量子波可以形成涡旋:具有螺旋相位前的实体和循环电流密度。这些特征确定了局部涡旋状态携带的内在轨道角动量。在过去的25年中,光学涡旋光束已成为现代光学的固有部分,具有许多显着的成就和应用。在过去的十年中,已经实现并证明这种涡旋束或波波囊也可以出现在自由电子波中,特别是在电子显微镜中。对自由电子涡流的兴趣迅速遍布不同的物理区域:通过量子力学的基本方面,通过应用对高能颗粒碰撞和辐射过程进行精细探测物质(包括单个原子)。在这里,我们对该新兴研究领域的理论和实验研究提供了全面的审查。我们描述了电子涡流状态,实验成果和可能在透射电子显微镜中的应用的主要特性,以及涡流电子在相对论和高能过程中的可能作用。我们的目标是提供平衡的描述,包括教学介绍,扎实的理论基础和广泛的实际细节。在任何自由电子发生的情况下,将特别注意将理论有限性转化为未来实验的建议,以便在电子显微镜下进行电子显微镜。 (c)2017 Elsevier B.v.保留所有权利。

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