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可调谐光致自由电子空间调制。

Tunable photon-induced spatial modulation of free electrons.

机构信息

Andrew and Erna Viterbi Department of Electrical Engineering, Technion, Israel Institute of Technology, Haifa, Israel.

Solid State Institute, Technion, Israel Institute of Technology, Haifa, Israel.

出版信息

Nat Mater. 2023 Mar;22(3):345-352. doi: 10.1038/s41563-022-01449-1. Epub 2023 Jan 26.

Abstract

Spatial modulation of electron beams is an essential tool for various applications such as nanolithography and imaging, yet its conventional implementations are severely limited and inherently non-tunable. Conversely, proposals of light-driven electron spatial modulation promise tunable electron wavefront shaping, for example, using the mechanism of photon-induced near-field electron microscopy. Here we present tunable photon-induced spatial modulation of electrons through their interaction with externally controlled surface plasmon polaritons (SPPs). Using recently developed methods of shaping SPP patterns, we demonstrate a dynamic control of the electron beam with a variety of electron distributions and verify their coherence through electron diffraction. Finally, the nonlinearity stemming from energy post-selection provides us with another avenue for controlling the electron shape, generating electron features far below the SPP wavelength. Our work paves the way to on-demand electron wavefront shaping at ultrafast timescales, with prospects for aberration correction, nanofabrication and material characterization.

摘要

电子束的空间调制是各种应用的重要工具,例如纳米光刻和成像,但传统的实现方式受到严重限制,且本质上不可调。相反,基于光驱动的电子空间调制的方案有望实现可调谐的电子波前整形,例如使用光子诱导近场电子显微镜的机制。在这里,我们通过电子与外部控制的表面等离激元(SPP)的相互作用,展示了对电子的可调谐光子诱导空间调制。利用最近开发的 SPP 图案成形方法,我们演示了各种电子分布的电子束的动态控制,并通过电子衍射验证了它们的相干性。最后,源于能量后选择的非线性为我们提供了另一种控制电子形状的途径,产生了远低于 SPP 波长的电子特征。我们的工作为在超快时间尺度上按需实现电子波前整形铺平了道路,具有像差校正、纳米制造和材料特性分析的前景。

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