Wan Weishi, Chen Fu-Rong, Zhu Yimei
ShanghaiTech University, Shanghai, China.
City University of Hong Kong, Kowloon, Hong Kong.
Ultramicroscopy. 2018 Nov;194:143-153. doi: 10.1016/j.ultramic.2018.08.005. Epub 2018 Aug 9.
Ultrafast high-energy electron microscopy, taking advantage of strong interaction of electrons with matter while minimizing space charge problems, can be used to address a wide range of grand challenges in basics energy sciences. However, MeV-electron lenses are inherently bulky and expensive, preventing them from acceptance in a broad scientific community. In this article, we report our novel design of a compact, low-cost imaging-lens system for MeV-electrons based on quadrupole multiplets, including triplet, quadruplet and quintuplet, both symmetric and asymmetric. We compare optical performance of quadrupole-based condenser, objective and projector lenses with that of the traditional round-lenses and discuss the strategy for their practical use in constructing MeV-electron microscopes for high spatial and temporal resolution single- and multi-shot imaging. Combining the compound electron-optical system with a photocathode radiofrequency (RF) gun, such a MeV electron microscope can be fit into a small-sized laboratory for ultrafast observations and measurements.
超快高能电子显微镜利用电子与物质的强相互作用,同时将空间电荷问题降至最低,可用于应对基础能源科学领域的一系列重大挑战。然而,兆电子伏特电子透镜本质上体积庞大且成本高昂,这使得它们难以被广大科学界所接受。在本文中,我们报告了一种基于四极多重态(包括对称和不对称的三重态、四重态和五重态)的用于兆电子伏特电子的紧凑型、低成本成像透镜系统的新颖设计。我们将基于四极的聚光镜、物镜和投影镜的光学性能与传统圆形透镜的光学性能进行了比较,并讨论了将其实际用于构建用于高空间和时间分辨率单次及多次成像的兆电子伏特电子显微镜的策略。将这种复合电子光学系统与光阴极射频(RF)枪相结合,这样的兆电子伏特电子显微镜可以安装在小型实验室中用于超快观测和测量。