论文标题
通过无激光超快电子显微镜直接可视化电磁波动力学
Direct visualization of electromagnetic wave dynamics by laser-free ultrafast electron microscopy
论文作者
论文摘要
将飞秒(FS)激光器集成到电子显微镜上,已使实时和空间中材料的瞬态结构和形态的直接成像,即超快电子显微镜(UEM)。在这里,我们报告了无激光UEM的开发,具有具有高时空分辨率的实时成像功能,但不需要昂贵的FS激光器和复杂的仪器修改。我们通过用辐射频率(RF)驱动的脉冲孔切碎连续的束来创建皮秒电子脉冲,以探测动态事件,其中电子脉冲的重复速率可调节100 MHz至12 GHz。启用了相同的电磁波宽带,以进行样品激发。作为第一个应用,我们研究了GHz电磁波传播动力学中的GHz梳子结构,这是RF微电动系统的基本构建块之一。一系列的泵探针图像在纳米空间和皮秒时间尺度上揭示了梳子周围的瞬态振荡电磁场,以及时间分辨的极化,幅度,幅度和非线性局部场地增强。这项研究的成功证明了低成本激光UEM在许多研究领域的动力学可视化动力学中的可行性,尤其是与信息处理技术相关的设备中的电动力学。
Integrating femtosecond (fs) lasers to electron microscopies has enabled direct imaging of transient structures and morphologies of materials in real time and space, namely, ultrafast electron microscopy (UEM). Here we report the development of a laser-free UEM offering the same capability of real-time imaging with high spatiotemporal resolutions but without requiring expensive fs lasers and intricate instrumental modifications. We create picosecond electron pulses for probing dynamic events by chopping a continuous beam with a radiofrequency (RF)-driven pulser, where the repetition rate of the electron pulses is tunable from 100 MHz to 12 GHz. A same broadband of electromagnetic wave is enabled for sample excitation. As a first application, we studied the GHz electromagnetic wave propagation dynamics in an interdigitated comb structure which is one of the basic building blocks for RF micro-electromechanical systems. A series of pump-probe images reveals, on nanometer space and picosecond time scales, the transient oscillating electromagnetic field around the tines of the combs, and time-resolved polarization, amplitude, and nonlinear local field enhancement. The success of this study demonstrates the feasibility of the low-cost laser-free UEM in real-space visualizing of dynamics for many research fields, especially the electrodynamics in devices associated with information processing technology.