超短脉冲
显微镜
飞秒
时间分辨率
衍射
图像分辨率
超快电子衍射
电子显微镜
电子
分辨率(逻辑)
光学
材料科学
纳米尺度
图像扭曲
电子衍射
纳米技术
物理
激光器
计算机科学
量子力学
人工智能
作者
Brett Barwick,Hyun Soon Park,Oh‐Hoon Kwon,J. Spencer Baskin,Ahmed H. Zewail
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2008-11-20
卷期号:322 (5905): 1227-1231
被引量:270
标识
DOI:10.1126/science.1164000
摘要
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging in electron microscopy has become an essential methodology in various fields of study. Here, we report 4D imaging, with in situ spatiotemporal resolutions, in ultrafast electron microscopy (UEM). The ability to capture selected-area-image dynamics with pixel resolution and to control the time separation between pulses for temporal cooling of the specimen made possible studies of fleeting structures and morphologies. We demonstrate the potential for applications with two examples, gold and graphite. For gold, after thermally induced stress, we determined the atomic structural expansion, the nonthermal lattice temperature, and the ultrafast transients of warping/bulging. In contrast, in graphite, striking coherent transients of the structure were observed in both image and diffraction, directly measuring, on the nanoscale, the longitudinal resonance period governed by Young's elastic modulus. The success of these studies demonstrates the promise of UEM in real-space imaging of dynamics.
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