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Direct visualization of electromagnetic wave dynamics by laser-free ultrafast electron microscopy

机译:通过无激光超快电子显微镜直接可视化电磁波动力学

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Integrating femtosecond lasers with electron microscopies has enabled direct imaging of transient structures and morphologies of materials in real time and space. Here, we report the development of a laser-free ultrafast electron microscopy (UEM) offering the same capability but without requiring femtosecond lasers and intricate instrumental modifications. We create picosecond electron pulses for probing dynamic events by chopping a continuous beam with a radio frequency (RF)–driven pulser with the pulse repetition rate tunable from 100 MHz to 12 GHz. As a first application, we studied gigahertz electromagnetic wave propagation dynamics in an interdigitated comb structure. We reveal, on nanometer space and picosecond time scales, the transient oscillating electromagnetic field around the tines of the combs with time-resolved polarization, amplitude, and local field enhancement. This study demonstrates the feasibility of laser-free UEM in real-space visualization of dynamics for many research fields, especially the electrodynamics in devices associated with information processing technology.
机译:将飞秒激光与电子显微镜集成在实时和空间中能够直接成像材料的瞬态结构和形态。在这里,我们报告了一种无激光超快电子显微镜(UEM)的开发,提供相同的能力,但不需要飞秒激光和错综复杂的仪器修改。我们通过用射频(RF)-drvive脉冲器砍连续光束,创建PICoSecond电子脉冲来探测动态事件,脉冲重复率从100 MHz到12 GHz可调。作为第一个应用,我们在交叉的梳状结构中研究了千赫兹电磁波传播动力学。我们透露,在纳米空间和皮秒尺度上,瞬态振荡电磁场围绕梳子的叉齿,具有时间分辨极化,幅度和局部场增强。本研究展示了许多研究领域的动态的现实空间可视化中的可行性UEM的可行性,尤其是与信息处理技术相关的设备中的电动动力学。

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